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Method and system to provide call transfer service for subscriber of access gateway control function |
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IPC classes for russian patent Method and system to provide call transfer service for subscriber of access gateway control function (RU 2491740):
Method for transferring packet data in wireless network and base station controller / 2490810
Technical key points of the present invention are as follows: before the base station controller receives a message sent by the serving GPRS support node (SGSN) to request the confirmation of a cell update of a mobile station (MS), the packet data of the first cell, initially meant to be sent to the MS, are transferred to a temporary block flow (TBF) between the MS and a second cell, and then sent to the base station (BTS) of the second cell via the TBF and then sent to the MS by the base station of the second cell.
Base station, mobile station, communication system and reordering method / 2486685
Data are sent from a handover source base station to a mobile station notifying that transference of packets has been executed during execution of handover sequence if the handover source base station transfers to the target handover base station packets which were not sent to the mobile station, from packets received from a host station, and the target handover base station sends packets to the mobile station. The mobile station reorders the received packets if transference of packets has been executed.
Method and system for controlling electronic mail message collection / 2485706
Electronic mail message collecting system has an internal interface and an external interface for managing message collection, as well as a collection module through which given source mail boxes are periodically checked and if there are messages present, the messages are forwarded to a common recipient box. The mail collection function is available for both authorised and unauthorised, as well as unregistered mail system users.
Method and system to identify network protocols based on description of client-server interaction / 2485705
Method of network protocols identification on the basis of a description of client-server interaction contains a description of available protocols of client-server interaction, collection of data on a bidirectional network interaction between the client and the server, simultaneous identification of packets related to multiple sessions of bidirectional interaction between the client and the server by identified protocols, analysis of parameters and the sequence of interaction of client-server components, identification of network protocols, according to which the client-server interaction is carried out.
Four-port backup device for coupling of circular networks of communication network / 2485704
Four-port backup device (FPBD), comprises two switchboards (2) of data packets, every of which is connected to the other switchboard (2) and with two ports (3 and 4), designed for connection into the first and second circular communications networks, and a clock synchronisation unit (5). To the unit (5) the outlets of two receivers (6) and (7) are connected, as well as inlets of two transmitters (8) and (9), designed for the first circular network, outlets of two receivers (10 and 11), inlets of two transmitters (12 and 13), designed for the second circular network, and the outlet of the receiver (14) of the external synchronisation signal. The unit (5) is made as capable of generation of a clock signal synchronised with output signals of receivers with introduction of a fixed delay of an output signal for each receiver, issue of a generated signal to inlets of transmitters, and as capable of translation of output signals of receivers to inlets of transmitters designed for the identical network. The device is equipped with a configuration interface (15) as capable of setting the receivers and transmitters of the synchronising signal, delay values of output signals of receivers and permit or prohibition of transmission of output signals of receivers to inlets of transmitters.
Three-port backup device for ring communication network / 2484593
Three-port backup device (1) has a data packet switch (2) connected to a port (3) for connecting to an intelligent electronic device, and with two ports (4) for connecting to a ring communication network, and a clock synchronisation unit (5). The unit (5) is connected to outputs of receivers (6), (7) and inputs of transmitters (8) and (9) for connecting to the ring communication network, the output of a receiver (10) for external synchronisation and the input of a transmitter (11) for connecting to an intelligent electronic device. The unit (5) is configured to generate a clock signal which is synchronised by output signals of receivers with introduction of a fixed delay of the output signal for the receiver, transmitting the generated signal to inputs of transmitters, and transmitting signals between receivers and transmitters. The three-port backup device is provided with a configuration interface (12) capable of assigning receivers and transmitters a synchronisation signal, delay values of output signals of receivers and allowing or prohibiting transmission of signals between receivers and transmitters.
Apparatus for detecting and eliminating faults when transmitting binary signals over two optical channel lines / 2484521
Apparatus has a first unit for relaying signals in a channel, having an optical signal coupler and a switch for selecting channel lines, which consists of four interconnected optical switches, and a second unit for detecting, allowing or prohibiting passage of external signals to the first unit, having a first unit for detecting presence of signals in two lines at the same time in the channel, presence of a signal in one line only, absence of signals in both lines during a given time interval, a second unit consisting of four delay elements for external signals, and a third unit consisting of four switches.
Visual mapping of field device message routes in wireless mesh network / 2483478
Control system uses a wireless mesh network to provide communication between a host computer and field devices. Performance of the wireless mesh network is monitored by collecting network performance data from each node, e.g. nodes with which it is communicating, received signal strengths over links to different nodes, the number of errors occurring on each link, and how frequently communication is occurring with each of the other nodes. A visual network map is generated using performance statistics based on the data gathered from the nodes of the wireless mesh network.
Message routing platform / 2483457
System for routing messages in a communication network includes a plurality of nodes, each including a plurality of servers connected to each other. Upon receipt of a packet for delivery to an intended recipient by a first server within the plurality of servers of a first node within the plurality of nodes, the system is configured to determine whether the intended recipient is connected to the first server. The packet is delivered if the recipient is connected to the first server. If it is determined that the intended recipient is not connected to the first selected server, the system is further configured to determine whether the packet contains a destination address and forward the packet to the destination address for delivery. If the packet does not contain a destination address, the system forwards the packet to a registry. The registry is configured to query at least one database to obtain the user profile of the intended recipient, and forward the packet to the intended recipient based on information contained in the user profile.
Method, apparatus and system for service identification / 2483352
Disclosed is a service identification method which comprises steps for receiving a service request, which includes a unified resource locator address and a field for indicating the type of service content from the service request, determining if the unified resource locator address is properly configured, solving the service request in order to identify the type of service from the service request in accordance with the field of the type of service content included in the service request if it is determined that the unified resource locator address is not properly configured, and a request is sent for the server address of the service which corresponds to the identified type of service.
Telecommunication multi-functional multiplexer / 2269154
Multiplexer has system block, wherein four-channeled telegraph one-polar and two-polar modules are positioned, as well as four-channeled standard-joint C2 module, bi-impulse one-channeled and two-channeled modules, one-channeled telephone module, m modules of four-channeled asynchronous adapter, group control electronic board, and also block for adjustment and control, and combination board.
Method for data acquisition on network topology / 2281612
Message requesting data acquisition on network topology that incorporates field limiting number of operations for message transfer from local station to adjacent ones is sent and following steps are repeated: request message receiving station returns response message and network topology data acquisition device finds out if number of message transfer operations has reached certain threshold value and terminates process if it is so, otherwise it sends request message to all adjacent stations.
Method for serial addressing by leading device of following devices in networks with bus topology with one leading device of network and several following devices / 2284087
Method for serial addressing by leading device of following devices in networks with bus topology with one network leading device and several following devices includes receipt by following devices of flush impulse, of information about address from leading device, comparison of received information about address by each following device with its own address and switching of one following device to data transfer mode if information received about address matches its own address. As information about address, received by following device, number of addressing impulses is used, and during transfer of one following device to data exchange mode other following devices are maintained in active mode.
Method for finding solutions concerning possibility of connection between network elements / 2285348
In accordance to method, each network element contains input ports and output ports, while each provides a set of connection points. Connection possibility tables contains data about possible internal connections between connection points of any input port and any output port of any network elements, controlled by network control system. Method allows each time during selection of certain network element for use in a route with its input port and its output port to receive solution at network control device level concerning connection capabilities for certain network element.
Method for complex protection of information / 2292122
Method for complex information protection is realized in following order: prior to transfer into communication channel or prior to recording into memory, state of used communication channel or information storage environment is analyzed, from M possible codes parameters of optimal (n,k) code for current status of channel or information storage end are determined, information subject to protection is split on q-nary symbols l bits long (q=2l) for each q-nary system gamma combinations l bits long are formed independently from information source, for each set of k informational q-nary symbols (n-k) excessive q-nary symbols are formed in accordance to rules of source binary (n,k) code, each q-nary symbol is subjected to encrypting stochastic transformation with participation of gamma, after receipt from communication channel or after reading from memory for each q-nary symbol combination of gamma with length l is generated, synchronously with transferring side, reverse stochastic decrypting transformation is performed for each q-nary symbol with participation of gamma, by means of checking expressions of source binary code localized are correctly read from memory or received q-nary symbols, untrustworthily localized symbols are deleted, integrity of message is restored by correcting non-localized and erased q-nary symbols of each block, expressing their values through values of trustworthily localized or already corrected q-nary symbols, if trustworthy restoration of integrity of code block is impossible it is deleted, number of deleted blocks is counted, optimality is determined within observation interval of used code with correction of errors for current state of channel, if code optimum criterion exceeds given minimal and maximal limits, code is replaced with optimal code synchronously at transferring and receiving parts of channel in accordance to maximum transfer speed criterion.
Method and device for transmitting service messages in wireless communication system / 2300846
One of methods involves identification of service option number corresponding to set of broadcast transmission parameters. As an alternative, message identifies bit block corresponding to broadcast transmission parameters. Message can be transferred over service information transmission channel. Message for system supporting broadcast service identifies protocol stack for processing broadcast service and also identifies protocol stack for processing broadcast content.
Information client-server system and method for providing graphical user interface / 2313824
In accordance to the invention, expandable, usable with various client-server informational systems, system of dynamically created program objects is used, wherein program objects are divided onto a fixed number of categories, which are matched with predetermined program interfaces, where creation of request to server and processing of response from server represent predetermined chains of program object method calls.
System for controlling passage of documental information / 2314648
System for controlling passage of documental information contains station for managing system for controlling information passage with operative-dispatching equipment, data transmission lines and phone communication connecting lines, station for controlling passage of documental information based on duty workplace for controlling passage of documental information and workplaces of two dispatchers, where each one of aforementioned workplaces is equipped with personal computer, containing system block, monitor, standard keyboard, "mouse" type graphical manipulator, printer and interface expander, block of adapters, block for connecting and distributing communication lines, client and connecting lines of service communications, service communications equipment, consisting of line commutation block and three control panels, one for each of aforementioned workplaces for controlling passage of documental information and of first and second dispatchers, n client stations for transferring documental information, each one of which contains group equipment block, four telegrapher panels and four end talking panels, data transmission lines and client phone communication lines, connected in a certain way.
Multi-layered content delivery network and method for multi-layered content delivery / 2321956
In accordance to the invention the network contains a content release layer, content delivery layer with at least one level of delivery sub-layer and a layer of boundary servicing, where the service release layer contains at least one node of Internet service provider (ICP), and is connected to first level delivery sub-layer in the content delivery layer, each delivery sub-layer contains at least one delivery unit, and the delivery sub-layer of the lowest level is connected to boundary service layer, the boundary service layer contains at least one boundary service area, and content, which is subject to release in a content release layer, is distributed through delivery node of first level delivery sub-layer, which is connected to content release layer, and further downwards level after level until the boundary service layer is reached.
Method to prevent from frequent interaction operations of network selection in wireless local area network / 2324293
Each time when it is necessary to output information on available mobile telecommunication networks, it is required to determine if output of information on available mobile telecommunication networks is allowed on the basis of the number of information transmissions performed within certain period of time. If the transmission is allowed, information on available mobile telecommunication networks is transmitted and number of performed transmissions is registered; otherwise information transmission is stopped. When value of the period for decision making is changed, the record of transmission number is updated. If after stop of information transmission a request is received for information output, this request is left without answer or the information is transmitted after delay.
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FIELD: radio engineering, communication. SUBSTANCE: method is described to provide a call transfer service for a subscriber of the access gateway control function, in which after the AGCF subscriber effects access to a subsystem-emulator of a switched public telephone network/digital network with services integration (PES), provide the AGCF subscriber with a call transfer service by application of the mode of strong/weak communication between AGCF and an applications server (AS) and by means of application of the mode of the main control/through control of AS between AS and subscribers that do not use AGCF. Also the system is described to provide a call transfer service for a subscriber of the access gateway control function, which includes a call transfer unit configured to provide a call transfer service for a AGCF subscriber by application of a mode of strong/weak communication between AGCF and the applications server (AS) and the mode of the main control/through control of AS between AS and subscribers not using AGCF. The method and system according to the invention make it possible to provide a call transfer service for an AGCF subscriber. EFFECT: efficiency of a call transfer service. 14 cl, 6 dwg
The technical field to which the invention relates. The present invention relates to the field of communications, more specifically, to method and system for providing transfer of the call to the subscriber management functions access gateway (AGCF, English - access gateway control function) in the network subsystem emulator PSTN/ISDN (PES, from the English - PSTN/ISDN Emulation Subsystem) public switched telephone network (PSTN from English - Public Switched Telephone Network)/digital network integrated services (ISDN, English - Integrated Services Digital Network). Background of invention The proposed partnership Project third generation (3GPP, English - 3rdGeneration Partnership Project) as a network architecture based on the Internet Protocol IP multimedia subsystem core network (IMS) provides an open and flexible working environment that supports multimedia applications and provides subscribers with extensive multimedia services. PES is a network architecture based on IP for traditional access terminal to an IMS network, the proposed project is the Convergence of services and protocols of communication networks and the Internet for advanced networks (TISPAN, English - Telecommunications and Internet Converged Services and Protocols for Advanced Networking). B present in the prior art known transmission services call for using the session initiation Protocol (SIP, English session initial protocol) terminal, implemented in the IMS architecture, including call transfer blind and call transfer on request; some manufacturers use this technology to transfer blindly call and transfer call request for a traditional terminal N using AGCF to try to replace the transmission service call for traditional terminal In the above two services. However, known from the prior art solutions have the following disadvantages: services like call transfer blind, and call transfer request must be registered for the subscriber; the subscriber must choose to use call transfer blind, or send the call request to implement call transfer, the choice cannot be changed; also changes the experience of subscribers, for example, the subscriber services will not hear the ring-back tone after initiation of the call transfer; and not yet implemented a strong connection to services call transfer blind and call transfer on request, provide to existing subscribers AGCF. To overcome these disadvantages has been proposed ETSI 183043; however, in the existing ETSI 183043 just described two modes of implementation, namely, weak links and strong links with respect to the traditional services for subscribers N, such as services tripartite is Onego connection and call waiting, and in the Annex to the ETSI 183043 also described the relevant threads. At the present time there is no specification that defines how to provide service to transfer the call to the subscriber using the AGCF or description of appropriate technologies. Summary of the invention C based on the above, the basis of the invention is the creation of methods and systems providing transmission service call AGCF for the call. To perform a specified task in the invention proposed the following technical solutions. B the invention, a method for providing transmission services call for a subscriber management functions access gateway (AGCF), in which after the subscriber AGCF accesses the subsystem-emulator switched telephone network of General use/digital network integration services (PES)provide the subscriber AGCF service call transfer through the use of strong/weak ties between the AGCF and the application server (AS) and by applying the mode of the main control/end-to-end management AS between AS and not using AGCF users. The provision of the service call transfer by applying strong communication and by applying the mode of the main control AS may include the following: after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call the La connections between subscribers AGCF and not using AGCF users, and initiates the interaction between the AGCF and the AS in the regime of strong coupling, and AS initiating main mode of control AS by passing requests to the changing environment does not use the AGCF subscribers who carry out the coordination environment in the mode of the main control AS and between them is the connection. Subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between the subscriber and the subscriber C is the connection or subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of call transfer using bilateral connection of subscribers to the service call transfer may additionally include the following: after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between subscriber B and subscriber C is the connection. The provision of the service call transfer by applying strong communication and by applying a pass-through mode control may include the following: after the subscriber AGCF hangs up, the AGCF sends AS a message about the end in the call for connections between the subscriber AGCF and not using AGCF users, and initiates the interaction between the AGCF and the AS in the regime of strong coupling, and AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF subscribers who carry out the coordination environment in pass-through mode control, and between them is the connection. Subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C transmits a confirmation of receipt; AS transmits to the subscriber B ACK; between subscriber B and subscriber C is the connection or subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, and after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. The provision of transmission service call by the application of the regime of weak ties and applies the mode of the main control AS may include the following: after the subscriber AGCF hangs up, AGCF initiates the interaction between the AGCF and the AS in the regime of weak ties by passing AS a change request call, and AS initiating main mode of control AS by passing requests to the changing environment does not use the AGCF subscribers who carry out the coordination environment in the mode of the main control AS and between them is the connection. Subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about successful change challenge; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the user B sends AS response is to a request for a change of environment; AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between subscriber B and subscriber C is the connection or subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about successful change challenge; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between subscriber B and subscriber C is carried out with the unity. The provision of the service call transfer by applying a weak mode of communication and the application of the pass-through mode control can additionally include the following: after the subscriber AGCF hangs up, AGCF initiates the interaction between the AGCF and the AS in the regime of weak ties, by passing AS a change request call, and AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF subscribers who carry out the coordination environment in pass-through mode control, and between them is the connection with each other. Subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; AS AGCF sends a message about the successful change of the call; the AGCF sends AS a message about the battle call for the connection between the subscriber a and subscriber B, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection or subscriber AGCF may be A subscriber, do not use AGCF subscribers can be a subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; AS AGCF sends a message about the successful change of the call; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS proof ol the EMA change request call; subscriber B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. B the proposed invention a system for providing transmission services call for a subscriber management access gateway, which includes: a transmission unit call, configured to provide a subscriber AGCF access to PES through AGCF, when this service call transfer is provided to the subscriber AGCF through the use of strong/weak ties between the AGCF and the application server (AS) and by applying the mode of the main control/end-to-end management AS between AS and not using AGCF users. If application of the regime of strong coupling and mode of the main control AS block call transfer may be further configured such that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates communication between the AGCF and the AS in the regime of strong coupling, and AS initiating main mode of control AS by passing the request to the changing environment does not use the AGCF users; not IP alzouma AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. If application of the regime of strong coupling and mode of the main control unit transfer the call may be further configured such that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates interaction in the regime of strong coupling between the AGCF and the AS AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in pass-through mode control, and between them is the connection. If application of the regime of strong coupling and mode of the main control AS block call transfer may be further configured such that after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call, AS initiating main mode of control AS by passing requests to the changing environment does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. If application of the regime of strong coupling and mode of the main control AS b is OK transfer the call may be further configured after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call, and AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in pass-through mode control, and between them is the connection. B according to the invention after the subscriber AGCF accesses PES through AGCF, the subscriber AGCF available call transfer through the use of strong/weak ties between the AGCF and the application server (AS) and application mode of the main control/end-to-end management AS between AS and not using AGCF users. B according to the invention subscribers traditional fixed networks can normally use the service call transfer, including the transfer of the call make the call and transfer the call connection mode, after the network access PES through AGCF. The use remains the same as before the implementation of network access PES. B the invention has two modes of implementation services call transfer between the AGCF and the AS, namely, weak ties and strong ties, and two modes of implementation services call transfer between AS and not using AGCF users, is it, end-to-end management and General management AS to provide service to transfer the call to the subscriber using the AGCF. Brief description of drawings Figure 1 shows a block diagram implementation of the first variant of the invention, figure 2 shows the block diagram implementation of the second variant of the invention, figure 3 shows the block diagram implementation of the third variant of the invention, figure 4 shows the block diagram implementation of the fourth variant embodiment of the invention, figure 5 shows the block diagram implementation of the fifth variant embodiment of the invention, figure 6 shows the block diagram implementation of the sixth variant embodiment of the invention. Detailed description The basic idea of the invention consists in the following: after the subscriber AGCF accesses PES through AGCF, the subscriber AGCF available call transfer through the use of strong/weak ties between the AGCF and the application server (AS) and application mode of the main control/end-to-end management AS between AS and not using AGCF users. Next, with reference to the drawings will be described in detail proposed technical solutions. B the invention, a method for providing transmission services call for a subscriber AGCF, including the following: after Bonet AGCF accesses PES through AGCF, the subscriber AGCF available call transfer through the use of strong/weak ties between the AGCF and the application server (AS) and application mode of the main control/end-to-end management AS between AS and not using AGCF users. Mode end-to-end control mode is end-to-end management for do not use AGCF users. The pass-through mode control is equivalent to the peer-to-peer control mode, and the mode of the main control AS equivalent to the control mode, master - slave. Next will be described the specific processes in the provision of transmission services call for a subscriber according to the AGCF scenarios, formed by various combinations of strong ties, weak ties, the mode of the main control and AS the pass-through mode control, respectively. The first scenario is the scenario that used the regime of strong coupling and mode of the main control AS. B this case the service call transfer, in particular, includes the following: when applying the regime of strong coupling between the AGCF and the AS after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates interaction in the regime of strong coupling between the AGCF and the AS when using mode osnovnoj shall control AS between AS and not using AGCF subscribers AS initiating main mode of control AS by passing requests to the changing environment does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. B this scenario, there are two cases that will be described later. B the first case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of transferring a call using the call service call transfer may additionally include the following: when applying the regime of strong coupling between the AGCF and the AS subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B and between subscriber a and subscriber C, respectively; in the application mode, the primary control AS between AS and not using AGCF subscriber after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C passes AS re is t to a request for a change of environment; between subscriber B and subscriber C is the connection. In the second case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: when applying the regime of strong coupling between the AGCF and the AS, after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; in the application mode, the primary control AS between AS and not using AGCF users, the AS transmits the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between subscriber B and subscriber C is the connection. The second scenario is the scenes of the bacilli, according to which is applied the regime of strong ties and pass-through mode control. B this case the service call transfer, in particular, includes the following: when applying the regime of strong coupling between the AGCF and the AS, after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates communication between the AGCF and the AS in the regime of strong coupling; and when using pass-through mode control between AS and not using AGCF users, AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in pass-through mode control, and between them is the connection. B this scenario, there are two cases that will be described later. B the first case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: when applying the regime of strong coupling between the AGCF and the AS, after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF divide terminalcontent A; AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, and when using pass-through mode control between AS and not using AGCF users, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. In the second case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: when applying the regime of strong coupling between the AGCF and the AS, after the subscriber AGCF hangs up, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and the e between the subscriber a and subscriber C, respectively; and AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, and when using pass-through mode control between AS and not using AGCF subscriber after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. The third scenario is the scenario in which you apply the regime of weak ties and the mode of the main control AS. B this case the service call transfer, in particular, includes the following: when applying the regime of weak ties after the subscriber AGCF hangs up, AGCF initiates the interaction between the AGCF and the AS in the regime of weak ties, by passing AS a change request call, and in the application mode, the primary control AS initiating main mode of control AS by passing requests to the changing environment is not using the m AGCF subscribers; do not use AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. B this scenario, there are two cases that will be described later. B the first case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: when applying the regime of weak ties after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about successful change challenge; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, and in the application mode, the main control of the AS transmits the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C parade is AS a response to the request for a change of environment; between subscriber B and subscriber C is the connection. In the second case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: when applying the regime of weak ties subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about successful change challenge; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B; in the application mode, the primary control AS after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; the AS sends to the subscriber B request to the changing environment; the subscriber B transmits AS a response to the request for a change of environment; the AS sends to the subscriber C request to the changing environment; the subscriber C transmits AS a response to the request for a change of environment; between subscriber B and subscriber C is the connection. Thursday is rtim scenario is the scenario, which apply the regime of weak ties and pass-through mode control. B this case the service call transfer, in particular, includes the following: when applying the regime of weak ties after the subscriber AGCF hangs up, AGCF initiates the interaction between the AGCF and the AS in the regime of weak ties, by passing AS a change request call, and when using pass-through mode control AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in pass-through mode control, and between them is the connection. B this scenario, there are two cases that will be described later. B the first case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: when applying the regime of weak ties after the subscriber C picks up the phone to pass AS an acknowledgement, the subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends soobschenieo the beginning of the connection changes; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C; AS AGCF sends a message about the successful change of the call; the AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B; when using pass-through mode control, the AS sends to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. In the second case, the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C; in the case of transferring a call using the call, the service call transfer may additionally include the following: when applying the regime of weak ties subscriber A hangs up, the AGCF releases the terminal of the user A; the AGCF sends AS a change request call; AS AGCF sends the ACK request to change the call; AS AGCF sends a message about the beginning of the connection changes; AS AGCF sends a message about the end of the call connection between the subscriber a and subscriber C;AS AGCF sends a message about the successful change of the call; AGCF sends AS a message about the end of the call connection between the subscriber a and subscriber B, when using pass-through mode control after the subscriber C picks up the phone to pass AS an acknowledgement, AS transmits to the subscriber B, the change request call, the subscriber B transmits AS an acknowledgement of the change request call; the user B sends AS a message about the beginning of the connection changes; the subscriber B transmits AS the proposal to start a communication session; the AS sends to the subscriber C to start the communication session; subscriber C passes AS an acknowledgement; the AS sends to the subscriber B ACK; between subscriber B and subscriber C is the connection. The invention will be described below with examples. The first version of the implementation: the case of transferring a call using the call and in the regimes of strong communication and basic management AS. As shown in figure 1, block diagram, implementation options implementation includes the following steps. S101: the connection between subscriber a and subscriber B AGCF is known from the prior art method. B this case, the subscriber B is not necessarily a subscriber AGCF, and may not be using the AGCF by the subscriber. Because in the following variants of the implementation are given the same description of the subscriber B, it is not described further. S102: the Subscriber gives A busy signal, to transmit the AGCF notification NOTIFY. S103: AFCF provides a new challenge in connection with the event, hang-up call from subscriber A initiates the call AS. The challenge is to start a communication session, in particular, SIP. S104: the AS sends to the partner of A subscriber, the subscriber B, the change request environment, sets a corresponding status of the environment, and maintains the subscriber B. the Message is to offer a RE-INVITE re-start communication, in particular, SIP. Further, AS can manage the server environment to reproduce a tone signal of readiness for A subscriber that allows the subscriber to enter A number of subscriber C; or AS may transmit AGCF response message failed due to incomplete rooms, allowing AGCF to manage the server environment to reproduce a tone signal of readiness for A subscriber that allows the subscriber to enter A number of subscriber C and make a new call. S105: AS initiates a call to subscriber C, and the challenge is to offer an INVITE to start a session using SIP signaling. S106-S107: the Subscriber C by the AS sends the subscriber A response to the call signal, which is the message of 18x SIP. The caller hears a ring-back tone or other signal-tips. S108-S109: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S110-S111: Respectively AGCF PE edit AS a message about the end of the call connection between the subscriber a and subscriber B, and between subscriber a and subscriber C, the message is a farewell message BYE SIP; the AS sends an acknowledgement for a connection between subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, while the message is a 200 OK message according to the SIP Protocol. Then AS allows the subscriber B to hear the ring-back tone or other signal-hints through negotiation environment and TPV accordance with their own logic and needs of different customers, and waits for an acknowledgment from the subscriber C. S112 (the user C picks up the phone to pass AS an acknowledgement, the message is a 200 OK message according to the SIP Protocol. S113-S118: the Subscriber B and subscriber C carry out the coordination environment is running AS, and between them is the connection. The second variant of implementation: the case of call transfer using bilateral connection subscribers in the modes of end-to-end management and strong communication. As shown in figure 2, block diagram, implementation options implementation includes the following steps. S201: the Connection between subscriber a and subscriber B AGCF is known from the prior art method. S202: the Subscriber gives A busy signal to pass AGCF notification NOTIFY. S203: AGCF provides a new challenge in connection with the event, hang-up call with the part of the subscriber A, and initiates a call AS. The challenge is to offer an INVITE to start a communication session, in particular, SIP. S204: the AS sends to the partner of A subscriber, such as subscriber B request to the changing environment, sets a corresponding status of the environment, and maintains the subscriber B. the Message is to offer a RE-INVITE re-start communication, in particular, SIP. Further, AS can manage the server environment to reproduce a tone signal of readiness for A subscriber that allows the subscriber to enter A number of subscriber C; or AS may transmit AGCF response message failed due to incomplete rooms, allowing AGCF to manage the server environment to reproduce a tone signal of readiness for A subscriber that allows the subscriber to enter A number of subscriber C and make a new call. S205: AS initiates a call to subscriber C, and the challenge is to offer an INVITE to start a session using SIP signaling. S206-S207: the Subscriber C picks up the phone (other intermediate answers in this case are not taken into account), through AS to transmit AGCF the ACK, which is a 200 OK message according to the SIP Protocol. Between the subscriber a and subscriber C is the connection. S208-209: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S210-S211: AGCF sends AS a message about the end of the call to the connect the s between the subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, farewell message BYE SIP; the AS sends an acknowledgement for a connection between subscriber a and subscriber B, and between subscriber a and subscriber C, respectively, while the message is a 200 OK message according to the SIP Protocol. S212: the AS sends to the subscriber B, the change request call, which is the REFER message sent by the SIP Protocol. S213: the Subscriber B transmits AS confirmation of receipt of the request for change challenge message 200 SIP, such as 202. S214: the Subscriber B sends AS a message about the beginning of the connection changes, which is the notification NOTIFY SIP containing the command 100 check. AS transmits to the subscriber B a 200 OK response, which is not accounted for in the block diagram. S215-S216: the Subscriber B through the AS transmits the subscriber C is a proposal to start a communication session, which is an INVITE message according to the SIP Protocol. S217-S218: the Subscriber C by the AS sends to the subscriber B ACK, and between subscriber B and subscriber C is the connection, if this confirmation is a 200 OK message according to the SIP Protocol. S219: After confirmation of receiving the subscriber C sends AS a message about the separation of the subscriber A and the subscriber C with the purpose of separation of the subscriber A and the subscriber C, the message is a farewell message BYE SIP. S220: After confirmation of receiving the subscriber B sends AS a message about the successful change of the call containing the command 200 OK, which is the notification NOTIFY SIP. S221: After receiving a message about a successful change call AS transmits to the subscriber B, the request to end the call connection between the subscriber a and subscriber B. A third option implementation: the case of call transfer using bilateral connection subscribers in the regimes of weak links and the main control of the AS. As shown in figure 3, block diagram, implementation options implementation includes the following steps. Spider S301 demonstration: the connection between subscriber a and subscriber B AGCF is known from the prior art method. W302: Subscriber gives A busy signal to pass AGCF notification NOTIFY. S303-S304: AGCF by serving AS a partner of the subscriber A and the subscriber B by passing the proposal RE-INVITE re-start the session using SIP signaling. The 200 OK response to the message RE-INVITE is not taken into account in the block diagram. S305-S306: AGCF plays a dial tone to the subscriber A and the subscriber enters A number of subscriber C. S307-S308: AGCF is implementing a new call subscriber A and the called subscriber C by AS if this challenge is to offer an INVITE to start a session using SIP signaling. S309-S310: the Subscriber C picks up the phone, through AS to pass confirmed the reception of A subscriber for the communication between the subscriber a and subscriber C, if this message is a 200 OK message according to the SIP Protocol. Before it can transmit some intermediate message, which in this case are ignored. S311-S312: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S313: the AGCF sends AS a change request call, which is the REFER message sent by the SIP Protocol. S314: AS AGCF sends a message about the beginning of change in connection with command 100 check, which is a notification NOTIFY SIP. B answer the AS sends the ACK request to change the call, which is a 200 OK message according to the SIP Protocol, such as 202, which is not accounted for in the block diagram. S315-S320: AS initiates the coordination environment between subscriber B and subscriber C for the communication between subscriber B and subscriber C. S321: AS notify the AGCF about the successful provision of transmission service call message containing the command 200 OK, which is the notification NOTIFY SIP. S322: AS AGCF sends a farewell BYE message to the calling subscriber A to subscriber C, and disconnects the subscriber A and subscriber C. a 200 OK Response, which passes AGCF not reflected in the block diagram. S323: the AGCF sends AS a farewell BYE message to the calling subscriber A subscriber a subscriber B, and disconnects the subscriber A and subscriber B. the 200 OK Response, which passes AS not reflected in the block diagram. The fourth option on the westline: the case of call transfer using bilateral connection subscribers in the modes of end-to-end management and poor communication. As shown in figure 4, the block diagram implementation options implementation includes the following steps. S401: the connection between subscriber a and subscriber B AGCF is known from the prior art method. S402: the Subscriber gives A busy signal to pass AGCF notification NOTIFY. S403-S404: AGCF by serving AS a partner of the subscriber A, namely, subscriber B by passing the proposal RE-INVITE re-start the session using SIP signaling. The 200 OK response to RE-INVITE is not taken into account in the block diagram. S405-S406: AGCF plays a dial tone to the subscriber A and the subscriber enters A number of subscriber C. S407-S408: AGCF is implementing a new call subscriber A and the called subscriber C by AS if this challenge is to offer an INVITE to start a session using SIP signaling. S409-S410: the Subscriber C picks up the phone, through AS to transmit an acknowledgement to the subscriber A to the communication between the subscriber a and subscriber C, the message is a 200 OK message according to the SIP Protocol. Before it can transmit some intermediate message, which in this case are ignored. S411-S412: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S413: AGCF sends AS a change request call, which is the REFER message sent by the SIP Protocol. S414: the AS sends to the subscriber B, the change request call, which is reported is giving REFER sending a SIP. S415-S416: the Subscriber B through AS AGCF sends the ACK request to change the call. The message is a 200 OK message no SIP, such as 202. S417-S418: the Subscriber B through AS AGCF sends a message about the beginning of change in connection with command 100 check, which is a notification NOTIFY SIP. AGCF through the AS sends to the subscriber B a 200 OK response, which is not accounted for in the block diagram. S419-S420: the Subscriber B through the AS transmits the subscriber C is a proposal to start a communication session, which is an INVITE message according to the SIP Protocol. S412-422: Subscriber C by the AS sends to the subscriber B ACK, and between subscriber B and subscriber C is the connection, if this confirmation is a 200 OK message according to the SIP Protocol. S423-S424: After confirmation of receiving the subscriber C by AS AGCF sends a message about the separation of the subscriber A and subscriber C to disconnect the subscriber A and subscriber C, the message is a farewell message BYE SIP. S425-S426: After receiving the ACK subscriber B through AS AGCF sends a message about successful change challenge notification NOTIFY SIP containing the command 200 OK. S427-S428: After receiving a message about a successful change call AGCF through the AS sends to the subscriber B, the request to end the call to connect the tion between the subscriber a and subscriber B. The fifth option implementation: the case of call transfer using call in the regimes of weak ties and the main control of the AS. As shown in figure 5, the block diagram implementation options implementation includes the following steps. S501: the connection between subscriber a and subscriber B AGCF is known from the prior art method. S502: the Subscriber gives A busy signal to pass AGCF notification NOTIFY. S503-S504: AGCF by serving AS a partner of the subscriber A, namely, subscriber B through the transfer proposals RE-INVITE re-start the session using SIP signaling. The 200 OK response to RE-INVITE is not taken into account in the block diagram. S505-S506: AGCF plays a dial tone to the subscriber A and the subscriber enters A number of subscriber C. S507-S508: AGCF is implementing a new call subscriber A and the called subscriber C by AS if this challenge is to offer an INVITE to start a session using SIP signaling. S509-S510: the Subscriber C by the AS sends the subscriber A response to the call signal, which is the message of 18x SIP. The caller hears a ring-back tone or other signal-tips. S511-S512: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S513: the Subscriber A hangs up, the AGCF sends AS a request to end the call, which is the REFER message sent by the SIP Protocol. S514: AS AGCF sends the ACK request is and change the call, which is a 200 OK message according to the SIP Protocol, such as 202. Then AS allows the subscriber B to hear the ring-back tone or other signal-hints through coordination environment in accordance with their own logic and needs of different customers, and waits for an acknowledgment from the subscriber C. S515: the Subscriber C picks up the phone to pass AS an acknowledgement, which is a 200 OK message according to the SIP Protocol. S516: AS AGCF sends a message about the beginning of change in connection with command 100 check, which is a notification to NOTIFY a SIP. S517-S522: AS initiates the coordination environment between subscriber B and subscriber C, resulting in between subscriber B and subscriber C is the connection. S523: AS notify the AGCF about the successful provision of transmission service call message containing the command 200 OK, which is the notification NOTIFY SIP. S524: AS AGCF sends a farewell BYE message to the calling subscriber A to subscriber C to disconnect the subscriber A and subscriber B. the 200 OK Response, which passes AGCF not reflected in the block diagram. S525: AGCF sends AS a farewell BYE message to the calling subscriber A to subscriber C to disconnect the subscriber A and subscriber C. a 200 OK Response, which passes AS not reflected in the block diagram. The sixth option implementation: the case of call transfer using the hand is a key challenge modes, end-to-end management and poor communication. As shown in Fig.6, block diagram, implementation options implementation includes the following steps. S601: the connection between subscriber a and subscriber B AGCF is known from the prior art method. S602: the Subscriber gives A busy signal to pass AGCF notification NOTIFY. S603-S604: AGCF by serving AS a partner of the subscriber A, namely, subscriber B through the transfer proposals RE-INVITE re-start the session using SIP signaling. The 200 OK response to RE-INVITE is not taken into account in the block diagram. S605-S606: AGCF plays a dial tone to the subscriber A and the subscriber enters A number of subscriber C. S607-S608: AGCF is implementing a new call subscriber A and the call to subscriber C by AS if this challenge is to offer an INVITE to start a session using SIP signaling. S609-S610: the Subscriber C by the AS sends the subscriber A response to the call signal, which is the message of 18x SIP. The caller hears a ring-back tone or other signal-tips. S611-S612: the Subscriber A hangs up, and AGCF releases the terminal of the subscriber A. S613: the Subscriber A hangs up, and AGCF sends AS a change request call, which is the REFER message sent by the SIP Protocol. S614: AS AGCF sends the ACK request to change the call, consist of message 200 SIP, such as 202. Then AS allows the subscriber B to hear the reverse signal is on call or other signals hints through negotiation environment, etc. in accordance with its own logic and needs of different customers, and waits for an acknowledgment from the subscriber C. S615 the user C picks up the phone to pass AS an acknowledgement, which is a 200 OK message according to the SIP Protocol. S616: the AS sends to the subscriber B, the change request call, which is the REFER message sent by the SIP Protocol. S617: the Subscriber B transmits AS AGCF confirmation of reception of the change request call. A confirmation message is 200 SIP, such as 202. S618-S619: the Subscriber B sends AS a message about the beginning of change in connection with command 100 check, which is a notification NOTIFY SIP. AGCF through the AS sends to the subscriber B a 200 OK response, which is not accounted for in the block diagram. S620-S621: Subscriber B through the AS transmits the subscriber C is a proposal to start a communication session, which is an INVITE message according to the SIP Protocol. S622-S623: Subscriber C by the AS sends to the subscriber B ACK, resulting in between subscriber B and subscriber C is the connection, if this confirmation is a 200 OK message according to the SIP Protocol. S624-S625: After confirmation of receiving the subscriber C by AS AGCF sends a message about the separation of the subscriber A and subscriber C to disconnect the subscriber A and the subscriber C, the message is a farewell message BYE ABM is the next SIP. S626-S627: After confirmation of receiving the subscriber B through AS AGCF sends a message about the successful change of the call containing the command 200 OK, which is the notification NOTIFY SIP. S628-S629: After receiving a message about a successful change call AGCF through the AS sends to the subscriber B, the request to end the call connection between the subscriber a and subscriber B. It should be noted that the above is merely a description of the principles of the invention and, respectively, I) the block diagram of the embodiment are merely examples, block diagrams, II) network elements, i.e. the AGCF and the AS and the messages they exchange are described in the variants of implementation mainly for a clear illustration of the concept of providing transmission services call for a subscriber AGCF. The invention is not limited to these network elements and messages in the specific forms of implementation, III) the invention is not limited to specific examples of atypical block diagrams or situations in the various flowcharts, sequence some messages and specific forms of implementation in a network element, IV) in the variants of the invention are considered two forms of implementation, namely, end-to-end control and management through AS, but should not exclude other embodiments, and V) although var is a preferable embodiment of the invention not described prerequisites, transcoding, the connection of the vocal tract in predatation state (P-early-media) and pre-connection that can be used when making the call, these features should be considered in the actual implementation. CSCF, illustrated in figure 3 and figure 5, indicates the function of the control compounds. In addition, it should be noted that the subscriber AGCF, repeatedly referred to in text, means the subscriber AGCF, namely, subscriber services call transfer, and appropriate do not use AGCF subscriber means a person who is not using the service call transfer, of course, that is not using the service AGCF the subscriber does not have to be a subscriber AGCF, and do not use AGCF subscribers may be subscribers AGCF or any network subscriber PES. B the proposed invention a system for providing transmission services call for a subscriber AGCF, which includes the block call transfer, configured to provide to the subscriber AGCF access to PES through the AGCF for the provision of transmission services call for a subscriber AGCF is strong/weak ties between the AGCF and the application server (AS) and the mode of the main control pass-through mode control AS between AS and not using AGCF users. B this case in different scenarios using different concrete forms is realizatsii block call transfer, which will be described later. The first specific form of implementation: in the scenario, according to which are applied the regime of strong coupling and mode of the main control AS block call transfer is additionally configured so that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates interaction in the regime of strong coupling between the AGCF and the AS. AS initiating main mode of control AS by passing the request to the changing environment does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. The second specific form of implementation: in the scenario, according to which are applied the regime of strong ties and pass-through mode control block call transfer is additionally configured so that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates interaction in the regime of strong coupling between the AGCF and the AS. AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in the mode skvoz the CSO control and between them is the connection. The third specific form of implementation: in the scenario, according to which are applied the regime of weak ties and the mode of the main control AS block call transfer is additionally configured so that after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call; AS initiating main mode of control AS by passing requests to the changing environment does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in the mode of the main control AS and between them is the connection. The fourth specific form of implementation: in the scenario, according to which are applied the regime of weak ties and pass-through mode control block call transfer is additionally configured so that after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call; AS initiates the pass-through mode control by transmitting a change request call does not use the AGCF users; do not use AGCF subscribers carry out the coordination environment in pass-through mode control, and between them is the connection. The above is only the description of the preferred embodiments of the invention and is not intended to limit the scope of protection of the invention. 1. Method of providing transmission services call for a subscriber management functions access gateway (AGCF), in which after the subscriber AGCF accesses the subsystem-emulator switched telephone network of General use/digital network integration services (PES)provide the subscriber AGCF service call transfer through the use of strong/weak ties between the AGCF and the application server (AS) and by applying the mode of the main control/end-to-end management AS between AS and not using AGCF users. 2. The method according to claim 1, wherein, when providing the service call transfer by applying a strong mode of communication and mode of the main control AS 3. The method according to claim 2, in which the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C, while in the case of transferring a call using the call Roo is executed transmission service call can optionally include the following: 4. The method according to claim 1, wherein, when providing the service call transfer by applying strong communication and pass-through mode control 5. The method according to claim 4, in which the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C, in the case of call transfer importanceeducational connection subscribers, the provision of transmission service call can optionally include the following: 6. The method according to claim 1, wherein, when providing the service call transfer by applying a weak mode of communication and mode of the main control AS 7. The method according to claim 6, in which the subscriber AGCF is the subscriber a, And n is using AGCF subscribers are subscriber B and subscriber C, in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: 8. The method according to claim 1, wherein, when providing the service call transfer by applying a regime of weak ties and pass-through mode control 9. The method according to claim 8, in which the subscriber AGCF is the subscriber A and not using AGCF subscribers are subscriber B and subscriber C, in the case of call transfer using bilateral connections of subscribers, the service call transfer may additionally include the following: 10. The system of providing the transmission service call to the subscriber management feature gateway access the PA, which includes the block call transfer, configured to provide to the subscriber AGCF access to PES through the AGCF for the provision of transmission services call for a subscriber AGCF is strong/weak ties between the AGCF and the application server (AS) and the mode of the main control pass-through mode control AS between AS and not using AGCF users. 11. The system of claim 10, in which in the case of strong mode of communication and mode of the main control AS block call transfer is additionally configured so that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using AGCF users, and initiates communication between the AGCF and the AS in the regime of strong coupling, and 12. The system of claim 10, in which in the case of strong mode of communication and mode of the main control block call transfer is additionally configured so that after the subscriber AGCF hangs up, the AGCF sends AS a message about the end of the call connection between the subscriber AGCF and not using the mi AGCF users, and initiates interaction in the regime of strong coupling between the AGCF and the AS, and 13. The system of claim 10, in which in the case of strong mode of communication and mode of the main control AS block call transfer is additionally configured so that after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call, 14. The system of claim 10, in which in the case of strong mode of communication and mode of the main control AS block call transfer is additionally configured so that after the subscriber AGCF hangs up, AGCF initiates interaction in the weak connection between the AGCF and the AS by passing AS a change request call, and
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