WO2016119218A1 - 呼叫补充业务配置同步方法、装置及系统 - Google Patents

呼叫补充业务配置同步方法、装置及系统 Download PDF

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Publication number
WO2016119218A1
WO2016119218A1 PCT/CN2015/071952 CN2015071952W WO2016119218A1 WO 2016119218 A1 WO2016119218 A1 WO 2016119218A1 CN 2015071952 W CN2015071952 W CN 2015071952W WO 2016119218 A1 WO2016119218 A1 WO 2016119218A1
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WIPO (PCT)
Prior art keywords
configuration
supplementary service
terminal
service configuration
call
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PCT/CN2015/071952
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English (en)
French (fr)
Inventor
汪雯琳
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华为技术有限公司
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to US15/547,764 priority Critical patent/US10433214B2/en
Priority to JP2017540242A priority patent/JP6567063B2/ja
Priority to EP15879426.3A priority patent/EP3244667B1/en
Priority to PCT/CN2015/071952 priority patent/WO2016119218A1/zh
Priority to KR1020177024015A priority patent/KR101982425B1/ko
Priority to CN201580074657.5A priority patent/CN107211380B/zh
Priority to KR1020197014175A priority patent/KR102040802B1/ko
Publication of WO2016119218A1 publication Critical patent/WO2016119218A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/084Configuration by using pre-existing information, e.g. using templates or copying from other elements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/085Retrieval of network configuration; Tracking network configuration history
    • H04L41/0853Retrieval of network configuration; Tracking network configuration history by actively collecting configuration information or by backing up configuration information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0876Aspects of the degree of configuration automation
    • H04L41/0886Fully automatic configuration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0011Control or signalling for completing the hand-off for data sessions of end-to-end connection
    • H04W36/0022Control or signalling for completing the hand-off for data sessions of end-to-end connection for transferring data sessions between adjacent core network technologies
    • H04W36/00224Control or signalling for completing the hand-off for data sessions of end-to-end connection for transferring data sessions between adjacent core network technologies between packet switched [PS] and circuit switched [CS] network technologies, e.g. circuit switched fallback [CSFB]
    • H04W36/00226Control or signalling for completing the hand-off for data sessions of end-to-end connection for transferring data sessions between adjacent core network technologies between packet switched [PS] and circuit switched [CS] network technologies, e.g. circuit switched fallback [CSFB] wherein the core network technologies comprise IP multimedia system [IMS], e.g. single radio voice call continuity [SRVCC]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • H04W36/0066Transmission or use of information for re-establishing the radio link of control information between different types of networks in order to establish a new radio link in the target network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/16Communication-related supplementary services, e.g. call-transfer or call-hold
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W56/00Synchronisation arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/02Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/02Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
    • H04W8/04Registration at HLR or HSS [Home Subscriber Server]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2203/00Aspects of automatic or semi-automatic exchanges
    • H04M2203/05Aspects of automatic or semi-automatic exchanges related to OAM&P
    • H04M2203/053Aspects of automatic or semi-automatic exchanges related to OAM&P remote terminal provisioning, e.g. of applets

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a call supplement service configuration synchronization method, apparatus, and system.
  • the supplementary service is an improvement and supplement to the basic services in mobile communication, and mainly includes seven categories: call identification, call forwarding, call completion, multiparty calling, call restriction, charging notification, and closed user group.
  • the call waiting service is a kind of supplementary service of the voice call service (basic service), and when the mobile phone user is in a call, another call is sent to the user, and the party that initiated the new call is placed on the waiting. The call user can choose whether to answer the newly accessed call or reject or ignore the newly accessed call.
  • the implementation of supplementary services in each generation of communication networks is also different.
  • the voice call service and its corresponding supplementary service are taken over by the circuit domain (ie, the CS domain, Circuit Switch), and the service configuration is stored in the core network.
  • the network side user configuration database ie, HLR, Home Location Register, home location register
  • MSC Mobile Switching Center
  • the voice call uses VoLTE (Voice over LTE Network) technology, and the IMS (IP Multimedia Subsystem) of the LTE network.
  • VoLTE Voice over LTE Network
  • IMS IP Multimedia Subsystem
  • the domain undertakes and its service configuration is stored on the terminal.
  • the call supplementary service configuration may be out of synchronization, and the user needs to manually perform the configuration again. Therefore, the ability of the conventional call technology to perform a call supplementary service configuration process to adapt to a plurality of communication networks is low.
  • the step of receiving the supplementary service configuration instruction further includes:
  • the circuit domain call supplementary service configuration obtained by the downloading is configured as a call supplementary service configuration storage on the terminal.
  • the step of receiving the input supplementary service configuration instruction further includes:
  • the circuit domain call supplementary service configuration obtained by the downloading is stored as a call supplementary service configuration on the terminal, and the call supplementary service configuration on the terminal is displayed.
  • the pass circuit domain downloads the circuit domain call supplementary service configuration by the home location register The steps are:
  • the step of determining whether the configuration is successful according to the configuration feedback information further includes:
  • the configuration parameters are discarded.
  • the step of determining whether the configuration is successful according to the configuration feedback information further includes:
  • the configuration parameter is stored as a call supplementary service configuration on the terminal;
  • the call supplementary service configuration on the terminal is periodically uploaded to the mobile switching center, which is stored by the mobile switching center as a circuit domain call supplementary service configuration in the home location register.
  • the step of determining whether the configuration is successful according to the configuration feedback information further includes:
  • the configuration parameter is stored as a call supplementary service configuration on the terminal; when detecting a network handover, the call supplementary service configuration on the terminal is uploaded to the mobile switching center, and the mobile switching center It is stored in the home location register as a circuit domain call supplemental service configuration.
  • a second aspect of the embodiments of the present invention provides a call supplementary service configuration synchronization apparatus, including:
  • Configuring an instruction receiving module configured to receive the input supplementary service configuration instruction, and obtain a configuration parameter corresponding to the service configuration instruction
  • circuit domain configuration module configured to upload the configuration parameter to a mobile switching center by using a circuit domain, where the mobile switching center stores the configuration as a circuit domain call supplementary service in a home location register;
  • a feedback information receiving module configured to receive the returned configuration feedback information
  • the local configuration module is configured to determine, according to the configuration feedback information, whether the configuration is successful, and if yes, store the configuration parameter as a call supplementary service configuration on the terminal.
  • the device further includes a boot synchronization module, configured to receive a boot command, and download the circuit domain call supplement from the home location register by using a circuit domain Charge business configuration;
  • the circuit domain call supplementary service configuration obtained by the downloading is configured as a call supplementary service configuration storage on the terminal.
  • the apparatus further includes: a configuration display module, configured to receive a service configuration display instruction, where the circuit domain call is downloaded by the home location register through a circuit domain Supplementary business configuration;
  • the circuit domain call supplementary service configuration obtained by the downloading is stored as a call supplementary service configuration on the terminal, and the call supplementary service configuration on the terminal is displayed.
  • the power-on synchronization module or the configuration display module is further configured to invoke a communication interface function of the wireless interface layer.
  • the circuit domain call supplementary service configuration is downloaded by the home location register by the function.
  • the local configuration module is further configured to discard the configuration parameter when the configuration fails.
  • the local configuration module is further configured to: when the configuration fails, use the configuration parameter as a call supplementary service configuration storage on the terminal;
  • the call supplementary service configuration on the terminal is uploaded to the mobile switching center, which is stored by the mobile switching center as a circuit domain call supplementary service configuration into the home location register.
  • the local configuration module is further configured to use the configuration parameter as a call on the terminal when the configuration fails. Supplementing the service configuration storage; uploading the call supplementary service configuration on the terminal to the mobile switching center when detecting the handover of the network, and storing, by the mobile switching center, the circuit domain call supplementary service configuration to the home location In the register.
  • a third aspect of the embodiments of the present invention provides a call supplementary service configuration synchronization system, including a terminal and a home location register, where:
  • the terminal is configured to receive an input supplementary service configuration instruction, obtain a configuration parameter corresponding to the service configuration instruction, upload the configuration parameter to a mobile switching center by using a circuit domain, and use the mobile switching center as a circuit domain call.
  • the supplementary service configuration is stored in the home location register;
  • the home location register returns corresponding configuration feedback information to the terminal through the mobile switching center
  • the terminal is further configured to determine, according to the configuration feedback information, whether the configuration is successful, and if yes, store the configuration parameter as a call supplementary service configuration on the terminal on the terminal.
  • system further includes a home subscriber server
  • the terminal is further configured to: when switching to the circuit domain-based communication network, acquire a call supplementary service configuration on the terminal stored on the terminal, and upload the call supplementary service configuration to the home user server corresponding to the terminal;
  • the home subscriber server is further configured to send the call supplementary service configuration on the terminal to a home location register corresponding to the terminal as a circuit domain call supplementary service configuration storage.
  • the home location register is further configured to: when the terminal switches to a multimedia subsystem-based communication network, the circuit domain corresponding to the terminal The call supplementary service configuration is sent to a home subscriber server corresponding to the terminal;
  • the home subscriber server is further configured to send the received circuit domain call supplementary service configuration corresponding to the terminal to the terminal, where the terminal configures and stores the call supplementary service on the terminal.
  • a call supplementary service configuration synchronization method includes:
  • the terminal receives the input supplementary service configuration command, acquires the configuration parameter corresponding to the service configuration command, and uploads the configuration parameter to the mobile switching center through the circuit domain, where the mobile switching center configures and stores the circuit as a supplementary service of the circuit domain. Go to the home location register;
  • the home location register returns corresponding configuration feedback information to the terminal through the mobile switching center
  • the terminal further determines, according to the configuration feedback information, whether the configuration is successful, and if yes, stores the configuration parameter as a call supplementary service configuration on the terminal on the terminal.
  • the method further includes:
  • the call supplementary service configuration on the terminal stored in the terminal is obtained, and is uploaded to the home user server corresponding to the terminal for storage;
  • the home subscriber server transmits the call supplementary service configuration on the terminal to the home location register storage corresponding to the terminal.
  • the method further includes:
  • the home location register sends a circuit domain call supplementary service configuration corresponding to the terminal to the home subscriber server corresponding to the terminal when the terminal switches to the multimedia subsystem-based communication network;
  • the home subscriber server is further configured to send the received circuit domain call supplementary service configuration corresponding to the terminal to the terminal, where the terminal configures and stores the call supplementary service on the terminal.
  • the circuit domain is first configured on the home location register corresponding to the user terminal, and then the local configuration is selected according to the configuration result of the circuit domain. Whether it takes effect, so that the user's local configuration (call supplementary service for the IMS domain) and the configuration stored on the home location register (call supplementary service configuration for the CS domain) can be kept in a synchronized state, so that the user's local configuration can be simultaneously Applicable to LTE networks and traditional 2G and 3G networks, which improves the ability of the call supplementary service configuration stored on the terminal to adapt to multiple communication networks.
  • FIG. 1 is a flowchart of a call supplementary service configuration synchronization method in an embodiment
  • FIG. 2 is a sequence diagram of a service configuration process performed by a terminal in an embodiment
  • FIG. 3 is a timing diagram of a process of starting a synchronization of a terminal in an embodiment
  • FIG. 4 is a sequence diagram of a process of a user opening a configuration interface of a terminal in an embodiment
  • FIG. 5 is a timing diagram of a terminal timing automatic synchronization process in an embodiment
  • FIG. 6 is a schematic structural diagram of a call supplementary service configuration synchronization apparatus in an embodiment
  • FIG. 7 is a schematic structural diagram of a call supplementary service configuration synchronization apparatus in another embodiment
  • FIG. 8 is a schematic structural diagram of a terminal in another embodiment
  • FIG. 9 is a topological structural diagram of a call supplementary service configuration synchronization system in an embodiment
  • FIG. 10 is a topological structural diagram of a call supplementary service configuration synchronization system in an embodiment
  • FIG. 11 is a flowchart of a call supplementary service configuration synchronization method in an embodiment
  • FIG. 12 is a timing diagram of a process in which a terminal network switches to a circuit domain coverage area in an embodiment
  • Figure 13 is a timing diagram of a handover of a terminal network to an IMS domain coverage area in one embodiment.
  • LTE Long Term Evolution, 4G network
  • 2G and 3G networks For call supplementary services, users need to configure them separately under different communication networks. At this time, the configuration is not synchronized.
  • the configuration generated by the shutdown operation is stored only locally in the terminal, and is not stored in the home location register of the circuit domain of the 2G network, so when the user moves to After the 2G network coverage area carried by the circuit domain, it is still possible to receive an incoming call prompt from a third party call (depending on the configuration file stored in the home location register corresponding to the terminal) during the voice call, but the user should be Under what circumstances, as long as the call waiting is set on the phone, you should not be able to receive an incoming call during the call.
  • a call supplementary service configuration synchronization method is proposed, which may depend on a computer program, which can be run on a computer system conforming to the von Neumann system. on.
  • the computer system can be a mobile phone, a smart phone, an electronic device supporting a SIM card with a cellular function, a palmtop computer, and the like.
  • the method is as shown in FIG. 1, and includes:
  • Step S102 Receive an input supplementary service configuration instruction, and acquire a configuration parameter corresponding to the service configuration instruction.
  • the supplementary service configuration command is an instruction for configuring the supplementary service. For example, an instruction to turn the call waiting service on or off.
  • the configuration parameter is the parameter of the call supplementary service execution included in the supplementary service configuration command.
  • a unified call supplementary service configuration interface can be displayed, and the unified configuration interface is used to configure configuration parameters of call supplementary services applicable to all existing mobile network types. For example, for call waiting services, it can be configured through a checkbox. If the user selects the check box, the configuration command for opening the call waiting service is input, and the input configuration parameter is enabled; if the user cancels the check box, the configuration command for closing the call waiting service is input, and the input configuration parameter is input. It is closed.
  • the call supplementary service configuration on the terminal is stored on the terminal performing the above steps, and is applicable to the 4G network corresponding to the multimedia subsystem (IMS domain) or other call supplementary service configuration stored in Communication network on the terminal.
  • IMS domain multimedia subsystem
  • Step S104 Upload the configuration parameters to the mobile switching center through the circuit domain, and store them as a circuit domain call supplementary service configuration in the home location register by the mobile switching center.
  • the terminal may call a communication interface function of a radio interface layer (RIL) according to the input configuration parameter as a function call parameter, and send the configuration parameter to the mobile switching center in the core network through the circuit domain.
  • RIL radio interface layer
  • the MSC is then sent by the MSC to the Home Location Register (HLR) for storage.
  • the configuration parameters related to the call supplementary service stored in the HLR are the circuit domain call supplementary service configuration.
  • the operating system of a mobile communication device such as an existing smart phone (such as Android, Windows Mobile, etc.) usually provides RIL framework code, and the communication interface function provided by the mobile communication device can control the baseband processor of the mobile communication device to perform wireless channel when invoked. Data transmission and reception work, the instructions issued by the circuit domain are sent to the home location register through a series of network elements.
  • the setCallWaiting function in the RIL framework (setting the RIL communication interface function of the call waiting service) can generate a corresponding instruction to control the baseband controller to send the aforementioned input configuration parameters to a series of circuit domain network elements.
  • the home location register is stored.
  • the Home Location Register is a database for mobile user management in a 2G or 3G communication network.
  • the subscription data of the user under the jurisdiction and the location information of the mobile user can provide routing information for the call to a certain terminal.
  • the process of uploading configuration parameters by the terminal through the circuit domain is: the terminal sends the configuration parameter to the base station controller (BSC, Base Station Controller) through the channel of the circuit domain through the RIL interface, and then the common channel is passed by the base station controller.
  • BSC Base Station Controller
  • the Signaling Network CCS, Common Channel Signalling, called the SS7 network in China
  • MSC Mobile Switching Center
  • Step S106 receiving the returned configuration feedback information.
  • the home location register After the configuration parameter is forwarded according to the received MSC, the home location register stores the configuration parameter in a database of the home location register, which is a circuit domain call supplementary service configuration. Then, the home location register can return the configured configuration feedback information to the terminal through the mobile switching center. If the home location register fails to be stored, the configuration failure information of the configuration failure can be returned to the terminal. Correspondingly, the configuration feedback information is returned to the terminal through a series of network elements as described above in the circuit domain, and the terminal parses the RIL layer to obtain configuration feedback information.
  • step S108 it is determined whether the configuration is successful according to the configuration feedback information. If yes, step S110 is performed; otherwise, step S112 is performed.
  • Step S110 The configuration parameter is stored as a call supplementary service configuration on the terminal.
  • Step S112 The configuration fails.
  • the terminal stores the configuration parameter, and the configuration parameter stored in the terminal is the call supplementary service configuration on the terminal, that is, whether it is a 2G, 3G or 4G network, according to the terminal.
  • the call compensation service configuration on the terminal is the same as the circuit domain call compensation service configuration stored in the home location register corresponding to the terminal, and in the 4G network, the call compensation service configuration on the terminal is It can be used as a call supplementary service configuration corresponding to the multimedia subsystem stored in the terminal. If the configuration feedback information is failed or the configuration feedback information is timed out, it is determined that the configuration fails.
  • the configuration parameter may be discarded after the configuration fails. That is to say, when the call location service configuration of the home location register storage circuit domain of the terminal fails, the call compensation service configuration stored by the terminal is not changed, so that the call compensation service configuration stored in the terminal and the home location register can be stored.
  • the circuit domain call compensation service configuration remains synchronized. Users can also be prompted to complete the configuration due to network problems. It is recommended that users move to an environment with network coverage before configuring.
  • FIG. 2 shows the entire timing process of steps S102 to S112.
  • the call supplementary service configuration stored on the terminal when the user sets the call supplementary service configuration on the terminal, first uploads the call supplementary service configuration stored on the terminal to the corresponding home location register through the circuit domain as the terminal.
  • the circuit domain calls supplementary service configuration for use in the 2G or 3G network to perform call supplementary services using this configuration. If the circuit domain call supplementary service configuration is successfully uploaded, the call supplementary service configuration is stored locally in the terminal for the call supplementary service under the 4G VoLTE network.
  • the call supplemental service configuration stored locally by the terminal is the same as the circuit domain call supplemental service configuration stored by the terminal on its corresponding home location register.
  • the user only needs to configure the terminal once successfully, and can complete the corresponding configuration under different communication networks at the same time; even if the user fails in the circuit domain configuration, the call supplementary service configuration stored locally by the terminal will not be changed, thereby ensuring different communication.
  • the call supplementary service configuration is consistent, so the above call supplementary service configuration has higher ability to adapt to multiple communication networks under multiple communication networks.
  • the method before the step of receiving the supplementary service configuration instruction, the method further includes:
  • FIG. 3 shows the entire sequence process of uploading the circuit domain call supplementary service configuration to the corresponding home location register through the circuit domain after the mobile terminal is powered on.
  • the step of downloading the circuit domain call supplementary service configuration corresponding to the terminal by the home location register through the circuit domain may be specifically:
  • the communication interface function of the wireless interface layer is called, and the circuit domain call supplementary service configuration is downloaded by the home location register through the function.
  • the communication interface function in the RIL framework provided by the Android system can be used in the startup program, for example, the RIL communication of the queryCallWaiting.
  • the interface function generates a query instruction for querying the call waiting service configuration information, and sends the query instruction to the home location register through the circuit domain, and the home location register queries the circuit domain call waiting service configuration corresponding to the terminal according to the instruction (for example, the service is enabled. Status identification), then send call waiting service configuration through the mobile switching center via BSC Return to the terminal.
  • the terminal After receiving the returned circuit domain call waiting service configuration, the terminal can store it locally, and the call waiting service configuration stored on the terminal can be used as a 4G network or other corresponding to the multimedia subsystem (IMS domain).
  • the call waiting service configuration needs to be stored in the call supplementary service configuration of the communication network on the terminal.
  • the terminal when the terminal is powered on, the terminal can first query the corresponding circuit domain call supplementary service configuration by the home location register through the circuit domain (CS domain), and then configure the query configuration as the call supplementary service configuration of the IMS domain. Therefore, the call supplementary service configuration of the CS domain and the IMS domain is consistent at the time of power-on, so that the call supplementary service configuration stored locally by the terminal can be synchronized and consistent for all network types supported by the terminal at the time of power-on. Therefore, for the user, the call supplementary service configuration stored on the terminal is a configuration content applicable to all communication network types, and does not need to be separately configured separately, thereby improving adaptation of multiple communication networks under multiple communication networks. The ability is higher.
  • the terminal fails to query the supplementary service configuration through the circuit domain (not in the 2G network and the 3G network coverage area or the signal is not good), the existing call supplementary service configuration in the local area is not modified.
  • the method before the step of receiving the supplementary service configuration instruction, the method further includes:
  • Receiving a service configuration display instruction downloading a circuit domain call supplementary service configuration by a home location register through a circuit domain; and configuring the downloaded circuit domain call supplementary service configuration as a call supplementary service configuration storage on the terminal, and displaying the call supplementary service Configuration.
  • FIG. 4 shows the entire sequence process of the call supplementary service configuration through the circuit domain and the home location register after the user enters the configuration interface of the call supplementary service configuration. .
  • the service configuration display instruction is input.
  • the terminal can call the communication interface function in the RIL framework provided by the Android system, for example,
  • the RIL communication interface function of the queryCallWaiting generates a query instruction for querying the circuit domain call waiting service configuration information, and sends the query instruction to the home location register, and the home location register queries the circuit domain call waiting service configuration corresponding to the terminal according to the instruction (for example, the The open status indicator of the service is then returned to the terminal through the mobile switching center.
  • the terminal After receiving the returned circuit domain call waiting service configuration, the terminal displays the call to the user through the page, and then stores it locally and overwrites the locally stored call waiting service configuration, which can be used as a call corresponding to the multimedia subsystem (IMS domain). Supplementary business configuration.
  • IMS domain multimedia subsystem
  • the configuration parameter may still be stored as a call supplementary service configuration on the terminal; but the terminal needs to be periodically installed.
  • the stored call supplementary service configuration is uploaded to the mobile switching center, which is stored by the mobile switching center as a circuit domain call supplementary service configuration in the home location register.
  • FIG. 5 shows the entire sequence process of the mobile terminal updating the timing after the circuit domain fails to perform the configuration of the supplementary call configuration to the home location register.
  • the return result of the circuit domain call supplementary service configuration uploaded to the home location register through the circuit domain is set failure or timeout (not in the case If the 2G or 3G network coverage area or the terminal signal is not good, the call supplementary service configuration input by the user is still stored as the call supplementary service configuration on the terminal, but the call supplementary service configuration is continuously sent to the home location register periodically until The home location register returns configuration feedback information that is successfully configured.
  • the call waiting service is still set to the on state on the terminal, but still needs to be
  • the communication interface function setCallWaiting of the RIL framework is called every predetermined time (for example, 10 minutes, half an hour, 1 hour, etc.) to initiate a configuration parameter for setting the call waiting service to the on state to the home location register. If the terminal moves to 2G After the 3G network coverage area or its signal strength is restored, the configuration success message returned by the home location register can be received, thereby ending the logic of calling the setCallWaiting function.
  • users can be configured in any environment. For example, if the user is located in a confined space, if the foregoing solution is adopted, the call supplementary service configuration process of the user in the confined space cannot be configured through the circuit domain, and therefore, the configuration failure is always prompted, and the user needs to move to the signal. The area with better strength can complete the configuration process. After the process is added, the user in the confined space only needs to be configured once, and after the user leaves the confined space and the signal strength is restored, the terminal can automatically complete the corresponding configuration through the circuit domain, thereby reducing the user configuration. The number of times increases the convenience of the operation.
  • the configuration parameter may still be stored as a call supplementary service configuration on the terminal; but the network switching event needs to be detected.
  • the global call supplementary service configuration stored on the terminal is uploaded to the mobile switching center, and the mobile switching center stores it as a circuit domain call supplementary service configuration in the home location register. That is to say, when the configuration fails, it is not necessary to periodically upload the circuit domain call supplementary service configuration, and only needs to upload the circuit domain call supplementary service configuration when the communication network is switched.
  • the network handover event is a system event triggered when the coverage area where the terminal is located is switched from the LTE network to the 2G or 3G network, or when the coverage area is switched from the 2G or 3G network to the LTE network.
  • the terminal When detecting a network switchover, the terminal must be under the coverage of a 2G network or a 3G network (otherwise there is no handover process), so the circuit domain remains connected, and the locally stored call supplementary service configuration is sent to the home location.
  • the storage of the register avoids the possibility of unnecessary transmission in the configuration process of the foregoing timing transmission circuit domain configuration instruction, thereby reducing the number of times the circuit domain initiates communication, and for mobile devices, the power consumption is reduced and the number of power consumption is reduced. Endurance ability.
  • a call supplementary service configuration synchronization device is further provided, as shown in FIG. 6, comprising: a configuration instruction receiving module 102, a circuit domain configuration module 104, and feedback information receiving. Module 106 and local configuration module 108, wherein:
  • the configuration instruction receiving module 102 is configured to receive the input supplementary service configuration instruction, and obtain the configuration parameter corresponding to the service configuration instruction.
  • the circuit domain configuration module 104 is configured to upload the configuration parameter to the mobile switching center through the circuit domain, and store it as a circuit domain call supplementary service configuration in the home location register by the mobile switching center.
  • the feedback information receiving module 106 is configured to receive the returned configuration feedback information.
  • the local configuration module 108 is configured to determine, according to the configuration feedback information, whether the configuration is successful, and if yes, store the configuration parameter as a call supplementary service configuration on the terminal.
  • the call supplementary service configuration synchronization device further includes a boot synchronization module 110, configured to receive a boot command, and download a circuit domain call supplementary service configuration by the home location register through the circuit domain;
  • the resulting circuit domain call supplementary service configuration is stored as a call supplementary service configuration on the terminal.
  • the call supplementary service configuration synchronization apparatus further includes a configuration display module 112, configured to receive a service configuration display instruction, and download a circuit domain call supplementary service configuration by the home location register through the circuit domain;
  • the resulting circuit domain call supplementary service configuration is stored as a call supplementary service configuration on the terminal, and the call supplementary service configuration on the terminal is displayed.
  • the power-on synchronization module 110 or the configuration display module 112 is further configured to invoke a communication interface function of the wireless interface layer by which the circuit domain call supplementary service configuration is downloaded from the home location register.
  • the local configuration module 108 is further configured to discard the configuration parameter when the configuration fails.
  • the local configuration module 108 is further configured to: when the configuration fails, store the configuration parameter as a call supplementary service configuration on the terminal; periodically upload the call supplementary service configuration stored on the terminal to the mobile switching center, It is stored by the mobile switching center as a circuit domain call supplementary service configuration in the home location register.
  • the local configuration module 108 is further configured to use configuration parameters when the configuration fails. Replenishing the service configuration storage for the call on the terminal; when detecting the handover of the network, uploading the call supplementary service configuration stored on the terminal to the mobile switching center, where the mobile switching center stores the call supplementary service configuration as the circuit domain In the home location register.
  • FIG. 8 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the user equipment may include: at least one processor 401, such as a CPU, a baseband controller, etc., at least one mobile communication radio frequency component 403.
  • Memory 404 at least one communication bus 402. Among them, the communication bus 402 is used to implement connection communication between these components.
  • the memory 404 may be a high speed RAM memory or a non-volatile memory such as at least one disk memory.
  • the memory 404 can optionally also be at least one storage device located remotely from the aforementioned processor 401.
  • a set of program codes is stored in the memory 404, and the processor 401 is configured to call program code stored in the memory for performing the following operations:
  • the processor 401 before the step of receiving the supplementary service configuration instruction, the processor 401 further includes:
  • the circuit domain call supplementary service configuration obtained by the downloading is configured as a call supplementary service configuration storage on the terminal.
  • the processor 401 before the step of receiving the input supplementary service configuration instruction, the processor 401 further includes:
  • the circuit domain call supplementary service configuration obtained by the downloading is used as a call supplement on the terminal
  • the service configuration stores and displays the call supplementary service configuration on the terminal.
  • the step of the processor 401 downloading the circuit domain call supplementary service configuration by the home location register through the circuit domain is:
  • the processor 401 further includes:
  • the configuration parameters are discarded.
  • the processor 401 further includes:
  • the configuration parameter is stored as a call supplementary service configuration on the terminal;
  • the call supplementary service configuration stored on the terminal is periodically uploaded to the mobile switching center, which is stored by the mobile switching center as a circuit domain call supplementary service configuration in the home location register.
  • the processor 401 further includes:
  • the configuration parameter is stored as a call supplementary service configuration on the terminal; when detecting a network handover, the call supplementary service configuration stored on the terminal is uploaded to the mobile switching center, where the mobile switching center The configuration is stored in the home location register as a circuit domain call supplemental service.
  • a call supplementary service configuration synchronization system is also proposed. As shown in FIG. 9, the terminal 10 and the home location register 20 are included, wherein:
  • the terminal 10 is configured to receive the input supplementary service configuration instruction, obtain the configuration parameter corresponding to the service configuration instruction, upload the configuration parameter to the mobile switching center by using the circuit domain, and use the mobile switching center as a circuit domain call supplement.
  • the service configuration is stored in the home location register.
  • the home location register 20 is configured to return corresponding configuration feedback information to the terminal through the mobile switching center.
  • the terminal 10 is further configured to determine, according to the configuration feedback information, whether the configuration is successful, and if yes, store the configuration parameter as a call supplementary service configuration on the terminal on the terminal.
  • the call supplemental service configuration synchronization system further includes a home subscriber server 30.
  • the terminal 10 is further configured to acquire a call supplementary service configuration stored on the terminal 10 when switching to the circuit domain-based communication network, and upload the call supplementary service configuration to the home subscriber server 30 corresponding to the terminal 10.
  • the home subscriber server 30 is also operative to transmit the call supplemental service configuration to the home location register 20 corresponding to the terminal 10 as a circuit domain call supplemental service configuration store.
  • the home location register 20 is further configured to send a circuit domain call supplementary service configuration corresponding to the terminal 10 to the terminal when the terminal 10 switches to the multimedia subsystem-based communication network.
  • the home subscriber server 30 is further configured to send a circuit domain call supplementary service configuration corresponding to the terminal 10 to the terminal when the terminal 10 switches to the multimedia subsystem-based communication network.
  • the home subscriber server 30 is further configured to send the received circuit domain call supplementary service configuration corresponding to the terminal to the terminal 10, which is configured and stored by the terminal 10 as a call supplementary service on the terminal.
  • a call supplementary service configuration synchronization method is also proposed for the call supplementary service configuration synchronization system, and the method may depend on a computer program, the computer
  • the program can run on a computer system that conforms to the von Neumann system.
  • the computer system may be a computer system including a terminal, a home location register as shown in FIG. 9, or a computer system including a terminal, a home location register, and a home subscriber server as shown in FIG.
  • the method is as shown in FIG. 11, and includes:
  • Step S202 The terminal receives the input supplementary service configuration instruction, acquires the configuration parameter corresponding to the service configuration instruction, and uploads the configuration parameter to the mobile switching center by using the circuit domain, where the mobile switching center supplements it as a circuit domain call.
  • the service configuration is stored in the home location register.
  • Step S204 The home location register returns corresponding configuration feedback information to the terminal through the mobile switching center.
  • the supplementary service configuration command is an instruction for configuring the supplementary service. For example, an instruction to turn the call waiting service on or off.
  • the configuration parameter is the parameter of the call supplementary service execution included in the supplementary service configuration command.
  • a unified call supplementary service configuration interface can be displayed, and the unified configuration interface is used to configure configuration parameters of call supplementary services applicable to all existing mobile network types. For example, for call waiting services, it can be configured through a checkbox. If the user selects the check box, the configuration command for opening the call waiting service is input, and the input configuration parameter is enabled; if the user cancels the check box, the configuration command for closing the call waiting service is input, and the input configuration parameter is input. It is closed.
  • the configuration parameters applicable to all mobile network types input through the unified configuration interface are call supplementary service configurations on the terminal, and the call supplementary service configuration on the terminal is stored on the terminal performing the above steps, and is applicable to the multimedia sub- The 4G network corresponding to the system (IMS domain) or other communication network that stores the call supplementary service configuration on the terminal.
  • the terminal may use the previously input configuration parameter as a function call parameter to invoke a communication interface function of a radio interface layer (RIL), and send the configuration parameter to the mobile switching center MSC in the core network through the circuit domain. Then, the MSC sends it to the Home Location Register (HLR) for storage, and the configuration parameter related to the call supplementary service stored in the HLR is the circuit domain call supplementary service configuration.
  • RIL radio interface layer
  • the operating system of a mobile communication device such as an existing smart phone (such as Android, Windows Mobile, etc.) usually provides RIL framework code, and the communication interface function provided by the mobile communication device can control the baseband processor of the mobile communication device to perform wireless channel when invoked. Data transmission and reception work, the instructions issued by the circuit domain are sent to the home location register through a series of network elements.
  • the setCallWaiting function in the RIL framework (setting the RIL communication interface function of the call waiting service) can generate a corresponding instruction to control the baseband controller to send the aforementioned input configuration parameters to a series of circuit domain network elements.
  • the home location register is stored.
  • the Home Location Register is a database for mobile user management in a 2G or 3G communication network.
  • the subscription data of the user under the jurisdiction and the location information of the mobile user may be used for a certain terminal.
  • the call provides routing information.
  • the process of uploading configuration parameters by the terminal through the circuit domain is as follows: the terminal uploads the configuration parameter to the base station controller (BSC, Base Station Controller) through the channel of the circuit domain through the RIL interface, and then the common channel is passed by the base station controller.
  • BSC Base Station Controller
  • the Signaling Network CCS, Common Channel Signalling, called the SS7 network in China
  • MSC Mobile Switching Center
  • the home location register After the configuration parameter is forwarded according to the received MSC, the home location register stores the configuration parameter in a database of the home location register, which is a circuit domain call supplementary service configuration. Then, the home location register can return the configured configuration feedback information to the terminal through the mobile switching center. If the home location register fails to be stored, the configuration failure information of the configuration failure can be returned to the terminal. Correspondingly, the configuration feedback information is returned to the terminal through a series of network elements as described above in the circuit domain, and the terminal parses the RIL layer to obtain configuration feedback information.
  • step S206 the terminal further determines whether the configuration is successful according to the configuration feedback information. If yes, the configuration parameter is stored as a call supplementary service configuration on the terminal on the terminal.
  • the terminal stores the configuration parameter, and the configuration parameter stored in the terminal is the call supplementary service configuration on the terminal, that is, whether it is a 2G, 3G or 4G network, according to the terminal.
  • the call compensation service configuration on the terminal is the same as the circuit domain call compensation service configuration stored in the home location register corresponding to the terminal, and in the 4G network, the call compensation service configuration on the terminal is It can be used as a call supplementary service configuration corresponding to the multimedia subsystem stored in the terminal. If the configuration feedback information is failed or the configuration feedback information is timed out, it is determined that the configuration fails.
  • the configuration parameter may be discarded after the configuration fails. That is to say, when the call location service configuration of the home location register storage circuit domain of the terminal fails, the call compensation service configuration stored by the terminal is not changed, so that the call compensation service configuration stored in the terminal and the home location register can be stored.
  • the circuit domain call compensation service configuration remains synchronized. Users can also be prompted to complete the configuration due to network problems. It is recommended that users move to an environment with network coverage before configuring.
  • FIG. 2 shows the entire timing process of steps S202 to S206.
  • the call supplementary service configuration stored on the terminal when the user sets the call supplementary service configuration on the terminal, first uploads the call supplementary service configuration stored on the terminal to the corresponding home location register through the circuit domain as the circuit domain call supplementary service configuration of the terminal, for providing This configuration is used to carry out call supplementary services on a 2G or 3G network. If the circuit domain call supplementary service configuration is successfully uploaded, the call supplementary service configuration is stored locally in the terminal for the call supplementary service under the 4G VoLTE network. Thus, the call supplemental service configuration stored locally by the terminal is the same as the circuit domain call supplemental service configuration stored by the terminal on its corresponding home location register.
  • the user only needs to configure the terminal once successfully, and can complete the corresponding configuration under different communication networks at the same time; even if the user fails in the circuit domain configuration, the call supplementary service configuration stored locally by the terminal will not be changed, thereby ensuring different communication.
  • the call supplementary service configuration is consistent, so the above call supplementary service configuration has higher ability to adapt to multiple communication networks under multiple communication networks.
  • the method before the step of receiving the supplementary service configuration instruction, the method further includes:
  • FIG. 3 shows the entire sequence process of uploading the circuit domain call supplementary service configuration to the corresponding home location register through the circuit domain after the mobile terminal is powered on.
  • the step of downloading the circuit domain call supplementary service configuration corresponding to the terminal by the home location register through the circuit domain may be specifically:
  • the communication interface function of the wireless interface layer is called, and the circuit domain call supplementary service configuration is downloaded by the home location register through the function.
  • the RIL framework provided by the Android system can be used in the startup program.
  • the letter interface function for example, the queryCallWaiting RIL communication interface function, generates a query instruction for querying the call waiting service configuration information, and sends it to the home location register through the circuit domain, and the home location register queries the circuit domain corresponding to the terminal according to the instruction
  • the call waits for a service configuration (for example, an open state identifier of the service), and then sends a call waiting service configuration through the mobile switching center to the terminal via the BSC.
  • a service configuration for example, an open state identifier of the service
  • the terminal After receiving the returned circuit domain call waiting service configuration, the terminal can store it locally, and the call waiting service configuration stored on the terminal can be used as a 4G network or other corresponding to the multimedia subsystem (IMS domain).
  • the call waiting service configuration needs to be stored in the call supplementary service configuration of the communication network on the terminal.
  • the terminal when the terminal is powered on, the terminal can first query the corresponding circuit domain call supplementary service configuration by the home location register through the circuit domain (CS domain), and then configure the query configuration as the call supplementary service configuration of the IMS domain. Therefore, the call supplementary service configuration of the CS domain and the IMS domain is consistent at the time of power-on, so that the call supplementary service configuration stored locally by the terminal can be synchronized and consistent for all network types supported by the terminal at the time of power-on. Therefore, for the user, the call supplementary service configuration stored on the terminal is a configuration content applicable to all communication network types, and does not need to be separately configured separately, thereby improving adaptation of multiple communication networks under multiple communication networks. The ability is higher.
  • the terminal fails to query the supplementary service configuration through the circuit domain (not in the 2G network and the 3G network coverage area or the signal is not good), the existing call supplementary service configuration in the local area is not modified.
  • the method further includes:
  • the terminal receives the service configuration display instruction, and downloads the circuit domain call supplementary service configuration by the home location register through the circuit domain; the circuit domain call supplementary service configuration obtained by the downloading is configured as a call supplementary service configuration storage on the terminal, and the call supplement is displayed Business configuration.
  • FIG. 4 shows that after the user enters the configuration interface of the call supplementary service configuration, the mobile terminal enters through the circuit domain and the home location register. Line calls complement the entire timing of the service configuration.
  • the service configuration display instruction is input.
  • the terminal can call the communication interface function in the RIL framework provided by the Android system, for example, the RIL communication interface function of the queryCallWaiting, generate a query instruction for querying the circuit domain call waiting service configuration information, and send it to the home location register, the home location register
  • the circuit domain call waiting service configuration corresponding to the terminal (for example, the open state identifier of the service) is queried according to the instruction, and then returned to the terminal through the mobile switching center.
  • the terminal After receiving the returned circuit domain call waiting service configuration, the terminal displays the call to the user through the page, and then stores it locally and overwrites the locally stored call waiting service configuration, which can be used as a call corresponding to the multimedia subsystem (IMS domain). Supplementary business configuration.
  • IMS domain multimedia subsystem
  • the terminal determines, according to the configuration feedback information, whether the step execution result of the configuration is successful, the configuration configuration fails, the configuration parameter may still be stored as a call supplementary service configuration on the terminal; but the terminal needs to be periodically installed.
  • the stored call supplementary service configuration is uploaded to the mobile switching center, which is stored by the mobile switching center as a circuit domain call supplementary service configuration in the home location register.
  • FIG. 5 shows the entire sequence process of the mobile terminal after timing resetting after setting the call supplementary service configuration on the home location register through the circuit domain.
  • the return result of the circuit domain call supplementary service configuration uploaded to the home location register through the circuit domain is set failure or timeout (not in the case If the 2G or 3G network coverage area or the terminal signal is not good, the call supplementary service configuration input by the user is still stored as the call supplementary service configuration on the terminal, but the call supplementary service configuration is continuously sent to the home location register periodically until The home location register returns configuration feedback information that is successfully configured.
  • the framework's communication interface function setCallWaiting uploads the configuration parameters that set the call waiting service to the on state to the home location register. If the terminal moves to the 2G or 3G network coverage area or its signal strength is restored, the message of successful configuration returned by the home location register can be received, thereby ending the logic of calling the setCallWaiting function periodically.
  • users can be configured in any environment. For example, if the user is located in a confined space, if the foregoing solution is adopted, the call supplementary service configuration process of the user in the confined space cannot be configured through the circuit domain, and therefore, the configuration failure is always prompted, and the user needs to move to the signal. The area with better strength can complete the configuration process. After the process is added, the user in the confined space only needs to be configured once, and after the user leaves the confined space and the signal strength is restored, the terminal can automatically complete the corresponding configuration through the circuit domain, thereby reducing the user configuration. The number of times increases the convenience of the operation.
  • the configuration parameter may still be stored as a call supplementary service configuration on the terminal; but the network switching event needs to be detected.
  • the call supplementary service configuration stored on the terminal is uploaded to the mobile switching center, and the mobile switching center stores it as a circuit domain call supplementary service configuration in the home location register. That is to say, when the configuration fails, it is not necessary to periodically upload the circuit domain call supplementary service configuration, and only needs to upload the circuit domain call supplementary service configuration when the communication network is switched.
  • the network handover event is a system event triggered when the coverage area where the terminal is located is switched from the LTE network to the 2G or 3G network, or when the coverage area is switched from the 2G or 3G network to the LTE network.
  • the terminal When detecting a network switchover, the terminal must be under the coverage of a 2G network or a 3G network (otherwise there is no handover process), so the circuit domain remains connected.
  • the locally stored call supplementary service configuration is sent to the home.
  • the location register is stored, that is, the case that the above-mentioned timing transmission circuit domain configuration instruction configuration process may be unnecessary to be transmitted multiple times is avoided, thereby reducing the number of times the circuit domain initiates communication. For mobile devices, power consumption is reduced and endurance is improved.
  • the call supplementary service configuration synchronization method further includes:
  • the call supplementary service configuration stored on the terminal is acquired and uploaded to the home subscriber server corresponding to the terminal.
  • the home subscriber server sends the call supplementary service configuration to a home location register corresponding to the terminal.
  • the Home Subscriber Server is a server for storing user configurations in the LTE network, and is an upgraded version of the HLR, which is connected to the mobile switching center MSC, as shown in FIG.
  • the terminal first configures the locally stored call supplementary service through the IMS domain base station eNodeB (ie, Evolved Node B, ie, the evolved Node B is referred to as eNB, the base station in the LTE network) and the SGSN of the IMS domain (Serving GPRS SUPPORT).
  • the NODE the mobile switching center in the LTE network
  • the HSS sends the call supplementary service configuration to the HLR corresponding to the service area to which the terminal is switched to store by the SGSN (in another embodiment,
  • the HSS is directly synchronized with the HLR, and the two synchronization modes can be connected with reference to the dotted line in FIG.
  • the terminal needs to deploy the call supplementary service under the traditional 2G or 3G network
  • the corresponding MSC can perform services according to the call supplementary service configuration stored on the HLR.
  • the call supplementary service configuration synchronization method further includes:
  • the home location register sends a circuit domain call supplementary service configuration corresponding to the terminal to the home subscriber server corresponding to the terminal when the terminal switches to the multimedia subsystem-based communication network;
  • the home subscriber server is further configured to send the received call supplementary service configuration corresponding to the terminal to the terminal, where the terminal configures and stores the call supplementary service on the terminal.
  • the coverage area handover also occurs.
  • the call supplementary service configuration stored on the terminal by the home location register HLR corresponding to the terminal is first sent by the MSC to the home subscriber server HSS corresponding to the service area to which the terminal is handed over.
  • the home subscriber server HSS The call supplementary service configuration is sent to the terminal for synchronization through the IMS domain.
  • the corresponding network element can perform the service according to the call supplementary service configuration stored on the terminal.
  • the terminal can maintain the call stored on the HSS.
  • the configuration of the call supplementary service performed by the user in different network environments may be synchronized by the home subscriber server and the home location register belonging to different networks.
  • the configuration of the call supplementary service performed by the user in different network environments may be synchronized by the home subscriber server and the home location register belonging to different networks.
  • the terminal there is no need to make any modification on the terminal, and only one configuration is required on the terminal, so that all network types can be adapted through the synchronization of the HSS and the HLR, thereby improving the configuration of the call supplementary service stored on the terminal.
  • the embodiment of the present invention further provides a computer storage medium storing a program, and when the program is executed, performing steps including part or all of the call supplementary service configuration synchronization method described in the embodiment of the present invention in conjunction with FIG. .
  • the circuit domain is first configured on the home location register corresponding to the user terminal, and then the local configuration is selected according to the configuration result of the circuit domain. Whether it takes effect, so that the user's local configuration (call supplementary service for the IMS domain) and the configuration stored on the home location register (call supplementary service configuration for the CS domain) can be kept in a synchronized state, so that the user's local configuration can be simultaneously Applicable to LTE networks and traditional 2G and 3G networks, which improves the ability of the call supplementary service configuration stored on the terminal to adapt to multiple communication networks.
  • the machine can be read into a storage medium, and when executed, the program can include the flow of an embodiment of the methods as described above.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

一种呼叫补充业务配置同步方法,包括:接收输入的补充业务配置指令,获取所述补充业务配置指令对应的配置参数;通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;接收返回的配置反馈信息;根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。此外,还提供了一种呼叫补充业务配置同步装置及系统,以及与该系统匹配的呼叫补充业务配置同步方法。上述呼叫补充业务配置同步方法、装置及系统能够使终端上的呼叫补充业务配置能够适配多种通信网络。

Description

呼叫补充业务配置同步方法、装置及系统 技术领域
本发明涉及通信技术领域,特别是涉及一种呼叫补充业务配置同步方法、装置及系统。
背景技术
补充业务是对移动通信中基本业务的改进和补充,主要包括呼叫识别、呼叫前转、呼叫完成、多方呼叫、呼叫限制、计费通知和闭合用户组这七个大类。例如,呼叫等待业务是语音通话业务(基本业务)的补充业务的一种,作用是当移动电话用户正在进行通话时,又有呼叫向用户发来,这时发起新呼叫的一方被置于等待,通话用户可以选择是否接听新接入的通话,或者拒绝、忽略新接入的通话。
然而,随着通信网络的更新换代,补充业务在每一代通信网络中的实现方式也并不相同。例如,在传统的2G(GSM,CDMA等)、3G(WCDMA等)网络中,语音通话业务及其相应的补充业务由电路域(即CS域,Circuit Switch)承接,其业务配置存储在核心网的网络侧的用户配置数据库(即HLR,Home Location Register,归属位置寄存器)上,在开展相应的补充业务时,由移动交换中心(MSC,Mobile Switching Center)读取相应业务配置。而在新兴的LTE(Long Term Evolution,长期演进系统,即4G网络)网络中,其语音通话采用的是VoLTE(Voice over LTE Network)技术,由LTE网络的IMS(IP Multimedia Subsystem,多媒体子系统)域承接,其业务配置存储在终端上。当用户在由LTE网络覆盖区域移动至传统的2G或3G网络覆盖区域发生切换时,会发生呼叫补充业务配置不同步的情况,从而需要用户重新手动进行配置。因此,传统技术中的进行呼叫补充业务配置过程的适配多种通信网络的能力较低。
发明内容
基于此,有必要提供一种能够提高适配多种通信网络的能力的呼叫补充业务配置同步方法。
接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数;
通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
接收返回的配置反馈信息;
根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
在第一方面的第一种可能的实现方式中,所述接收补充业务配置指令的步骤之前还包括:
接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
结合第一方面的可能实现方式,在第二种可能实现方式中,所述接收输入的补充业务配置指令的步骤之前还包括:
接收业务配置展示指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述终端上的呼叫补充业务配置。
结合第一方面以及第一方面的第一种或第二种可能实现的方式,在第三种可能实现方式中,所述通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置的步骤为:
调用无线接口层的通信接口函数,通过该函数由所述归属位置寄存器下载所述电路域呼叫补充业务配置。
结合第一方面的可能实现方式,在第四种可能实现方式中,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,则丢弃所述配置参数。
结合第一方面的可能实现方式,在第五种可能实现方式中,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;
定期将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
结合第一方面的可能实现方式,在第六种可能实现方式中,在第五种可能实现方式中,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
此外,还有必要提供一种能够提高适配多种通信网络的能力的呼叫补充业务配置同步装置。
本发明实施例第二方面提供了一种呼叫补充业务配置同步装置,包括:
配置指令接收模块,用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数;
电路域配置模块,用于通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
反馈信息接收模块,用于接收返回的配置反馈信息;
本地配置模块,用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
在第二方面的第一种可能的实现方式中,所述装置还包括开机同步模块,用于接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补 充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
结合第二方面的可能实现方式,在第二种可能实现方式中,所述装置还包括配置展示模块,用于接收业务配置展示指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述终端上的呼叫补充业务配置。
结合第二方面以及第二方面的第一种或第二种可能实现的方式,在第三种可能实现方式中,所述开机同步模块或配置展示模块还用于调用无线接口层的通信接口函数,通过该函数由所述归属位置寄存器下载所述电路域呼叫补充业务配置。
结合第二方面的可能实现方式,在第四种可能实现方式中,所述本地配置模块还用于在配置失败时,丢弃所述配置参数。
结合第二方面的可能实现方式,在第五种可能实现方式中,所述本地配置模块还用于在配置失败时,将所述配置参数作为终端上的呼叫补充业务配置存储;定期将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
结合第二方面的可能实现方式,在第六种可能实现方式中,在第五种可能实现方式中,所述本地配置模块还用于在配置失败时,将所述配置参数作为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
此外,还有必要提供一种能够提高适配多种通信网络的能力的呼叫补充业务配置同步系统。
本发明实施例第三方面提供了一种呼叫补充业务配置同步系统,包括终端、归属位置寄存器,其中:
所述终端用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
所述归属位置寄存器通过移动交换中心向所述终端返回相应的配置反馈信息;
所述终端还用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储在所述终端上。
在第三方面的第一种可能的实现方式中,所述系统还包括归属用户服务器;
所述终端还用于在切换至基于电路域的通信网络时,获取该终端上存储的终端上的呼叫补充业务配置,将其上传至与所述终端对应的归属用户服务器存储;
所述归属用户服务器还用于将所终端上的呼叫补充业务配置发送至与所述终端对应的归属位置寄存器作为电路域呼叫补充业务配置存储。
结合第三方面的可能实现方式,在第二种可能实现方式中,所述归属位置寄存器还用于在所述终端切换至基于多媒体子系统的通信网络时,将与所述终端对应的电路域呼叫补充业务配置发送至与所述终端对应的归属用户服务器;
所述归属用户服务器还用于将接收到的与所述终端对应的电路域呼叫补充业务配置下发给所述终端,由所述终端将其作为终端上的呼叫补充业务配置存储。
此外,针对前述的呼叫补充业务配置同步系统,相应的,还有必要提供一种能够提高适配多种通信网络的能力的呼叫补充业务配置同步方法。
一种呼叫补充业务配置同步方法,包括:
终端接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
归属位置寄存器通过移动交换中心向所述终端返回相应的配置反馈信息;
终端还根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储在所述终端上。
在第三方面的第一种可能的实现方式中,所述方法还包括:
终端在切换至基于电路域的通信网络时,获取该终端上存储的终端上的呼叫补充业务配置,将其上传至与所述终端对应的归属用户服务器存储;
归属用户服务器将所述终端上的呼叫补充业务配置发送至与所述终端对应的归属位置寄存器存储。
结合第三方面的可能实现方式,在第二种可能实现方式中,所述方法还包括:
归属位置寄存器在所述终端切换至基于多媒体子系统的通信网络时,将与所述终端对应的电路域呼叫补充业务配置发送至与所述终端对应的归属用户服务器;
归属用户服务器还用于将接收到的与所述终端对应的电路域呼叫补充业务配置下发给所述终端,由所述终端将其作为终端上的呼叫补充业务配置存储。
上述呼叫补充业务配置同步方法中,在用户进行本地的呼叫补充业务配置时,先通过电路域在该用户的终端对应的归属位置寄存器上进行配置,然后再根据电路域的配置结果选择本地的配置是否生效,使得用户在本地的配置(针对IMS域的呼叫补充业务)与归属位置寄存器上存储的配置(针对CS域的呼叫补充业务配置)能够保持同步状态,从而使得用户在本地的配置能够同时适用LTE网络和传统的2G、3G网络,提高了终端上存储的呼叫补充业务配置的适配多种通信网络的能力。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为一个实施例中一种呼叫补充业务配置同步方法的流程图;
图2为一个实施例中终端进行业务配置过程的时序图;
图3为一个实施例中终端开机启动同步过程的时序图;
图4为一个实施例中用户打开终端的配置界面过程的时序图;
图5为一个实施例中终端定时自动同步过程的时序图;
图6为一个实施例中一种呼叫补充业务配置同步装置的结构示意图;
图7为另一个实施例中一种呼叫补充业务配置同步装置的结构示意图;
图8为另一个实施例中一种终端的结构示意图;
图9为一个实施例中一种呼叫补充业务配置同步系统的拓扑结构图;
图10为一个实施例中一种呼叫补充业务配置同步系统的拓扑结构图;
图11为一个实施例中一种呼叫补充业务配置同步方法的流程图;
图12为一个实施例中终端网络切换至电路域覆盖区域过程的时序图;
图13为一个实施例中终端网络切换至IMS域覆盖区域的时序图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
如前所述,LTE(Long Term Evolution,长期演进系统,即4G网络)网络 为新兴网络,国内目前仍处于建设阶段,因此存在LTE网络和2G、3G网络并存的情况。对于呼叫补充业务,用户则需要在不同的通信网络下分别进行配置,此时则会出现配置不同步的问题。
例如,用户在VoLTE覆盖区域时选择关闭了呼叫等待业务,但该关闭操作产生的配置仅在终端本地进行存储,没有上传至2G网络的电路域的归属位置寄存器中进行存储,因此当用户移动到由电路域承载的2G网络覆盖区域后,仍有可能在语音通话时收到来自第三方通话的来电提示(取决于该终端对应的归属位置寄存器中存储的配置文件),然而用户本意应当是无论什么情况下,只要已经在手机上设置了关闭呼叫等待,就不应该还能在呼叫过程中收到来电提示。
因此,为了提高呼叫补充业务配置的网络适配性,特提出了一种呼叫补充业务配置同步方法,该方法可依赖于计算机程序,该计算机程序可运行于符合冯诺依曼体系的计算机系统之上。该计算机系统可以是手机、智能手机、支持SIM卡带有蜂窝功能的平板电脑、掌上电脑等电子设备。
在一个实施例中,具体的,该方法如图1所示,包括:
步骤S102,接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数。
补充业务配置指令即为用于对补充业务进行配置的指令。例如开启或关闭呼叫等待业务的指令等。配置参数即为补充业务配置指令中包含的呼叫补充业务执行的参数。
在本实施例中,可展示统一的呼叫补充业务配置界面,该统一的配置界面用于配置适用于现有的所有移动网络类型的呼叫补充业务的配置参数。例如,对于呼叫等待业务,可通过勾选框(checkbox)进行配置。若用户选中了勾选框,即输入了开启呼叫等待业务的配置指令,输入的配置参数即为开启;若用户取消了勾选框,即输入了关闭呼叫等待业务的配置指令,输入的配置参数即为关闭。通过该统一的配置界面输入的适用于所有移动网络类型的配置参数即 为终端上的呼叫补充业务配置,该终端上的呼叫补充业务配置存储在执行上述步骤的终端上,可适用于与多媒体子系统(IMS域)对应的4G网络或其他将呼叫补充业务配置存储在终端上的通信网络。
步骤S104,通过电路域将配置参数上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
在本实施例中,终端可以根据前述输入的配置参数作为函数调用参数调用无线接口层(RIL,Radio Interface Layer)的通信接口函数,将该配置参数通过电路域发送给处于核心网的移动交换中心MSC,再由MSC发送至归属位置寄存器(HLR,Home Location Register)进行存储,存储在HLR中的与呼叫补充业务相关的配置参数即为电路域呼叫补充业务配置。
现有的智能手机等移动通信设备的操作系统(例如Android、Windows Mobile等)通常提供RIL框架性代码,其提供的通信接口函数在调用时,可控制移动通信设备的基带处理器进行无线信道的数据发送和接收工作,其发出的指令即通过电路域经过一系列网元发送至归属位置寄存器。
例如,在Android系统中,可通过调用RIL框架中的setCallWaiting函数(设置呼叫等待业务的RIL通信接口函数)生成相应的指令控制基带控制器将前述输入的配置参数经一系列电路域网元发送给归属位置寄存器进行存储。
归属位置寄存器(HLR)为2G或3G通信网络中,负责移动用户管理的数据库。存储所管辖用户的签约数据及移动用户的位置信息,可为至某终端的呼叫提供路由信息。
在本实施例中,终端通过电路域上传配置参数的过程为:终端通过RIL接口将配置参数通过电路域的信道发送给基站控制器(BSC,Base Station Controller),再由基站控制器通过公共信道信令网络(CCS,Common Channel Signalling,在中国称为七号信令网)将其传输给移动交换中心(MSC,Mobile Switching Center),然后由移动交换中心将其发送至归属位置寄存器进行存储。
步骤S106,接收返回的配置反馈信息。
归属位置寄存器在根据接收到的MSC转发的配置参数后,将该配置参数存储在归属位置寄存器的数据库中,该配置参数即为电路域呼叫补充业务配置。然后归属位置寄存器可通过移动交换中心向终端返回配置成功的配置反馈信息,若归属位置寄存器存储失败,则可向终端返回配置失败的配置反馈信息。相应的,该配置反馈信息通过电路域上如前所述的一系列网元返回给终端,终端通过RIL层对其进行解析,即可获取配置反馈信息。
步骤S108,根据配置反馈信息判断是否配置成功,若是,则执行步骤S110;否则,执行步骤S112。
步骤S110:将配置参数作为终端上的呼叫补充业务配置存储。
步骤S112:配置失败。
若配置反馈信息为配置成功,则终端存储该配置参数,存储在终端上的配置参数即为终端上的呼叫补充业务配置,也就是说不管是2G、3G还是4G网络,均按照该终端上的呼叫补充业务配置开展业务。在2G,3G网络中,该终端上的呼叫补偿业务配置即和与终端对应的归属位置寄存器中存储的电路域呼叫补偿业务配置相同,而在4G网络中,该终端上的呼叫补偿业务配置即可作为终端存储的与多媒体子系统对应的呼叫补充业务配置。而若配置反馈信息为失败或接收配置反馈信息超时,则判定为配置失败。
在一个实施例中,配置失败后可丢弃该配置参数。也就是说,在终端对应的归属位置寄存器存储电路域呼叫补偿业务配置失败时,终端存储的呼叫补偿业务配置不会被更改,从而可保持终端上存储的呼叫补偿业务配置与归属位置寄存器中存储的电路域呼叫补偿业务配置保持同步。还可提示用户因网络问题无法完成配置,建议用户移动到有网络覆盖的环境再行配置。
上述步骤执行的详细的时序过程可参考如图2所示,图2展示了步骤S102至步骤S112的整个时序过程。
也就是说,用户在终端上设置呼叫补充业务配置时,先通过电路域向其对应的归属位置寄存器上传该终端上已存储的呼叫补充业务配置作为该终端的 电路域呼叫补充业务配置,以供在2G或3G网络下使用该配置开展呼叫补充业务。若通过电路域呼叫补充业务配置上传成功,再在终端本地存储该呼叫补充业务配置,以供在4G的VoLTE网络下开展呼叫补充业务。从而使得终端本地存储的呼叫补充业务配置与该终端在其对应的归属位置寄存器上存储的电路域呼叫补充业务配置相同。用户仅需在终端上配置成功一次,即可同时完成不同通信网络下相应的配置;而即使用户在电路域配置失败,终端本地存储的呼叫补充业务配置也不会被更改,从而保证了不同通信网络下,呼叫补充业务配置的一致性,因此上述呼叫补充业务配置在多种通信网络下的适配多种通信网络的能力较高。
进一步的,在本实施例中,接收补充业务配置指令的步骤之前还包括:
接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;将下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
上述步骤执行的详细的时序过程可参考如图3所示,图3展示了手机终端开机之后通过电路域向其对应的归属位置寄存器上传电路域呼叫补充业务配置的整个时序过程。
在一个实施例中,通过电路域由归属位置寄存器下载与终端对应的电路域呼叫补充业务配置的步骤可具体为:
调用无线接口层的通信接口函数,通过该函数由归属位置寄存器下载电路域呼叫补充业务配置。
例如,在使用Android系统的智能手机的应用场景中,如前所述,Android手机在开机启动时,可在启动程序中使用Android系统提供的RIL框架中的通信接口函数,例如,queryCallWaiting的RIL通信接口函数,生成查询呼叫等待业务配置信息的查询指令,并通过电路域将其发送至归属位置寄存器,归属位置寄存器根据该指令查询与该终端对应的电路域呼叫等待业务配置(例如该业务的开启状态标识),然后通过移动交换中心发送呼叫等待业务配置经BSC 返回给该终端。
终端接收到返回的电路域呼叫等待业务配置之后,即可将其存储在本地,该存储在终端上的呼叫等待业务配置即可作为与多媒体子系统(IMS域)对应的用于4G网络或其他需要将呼叫等待业务配置存储在终端上的通信网络的呼叫补充业务配置。
也就是说,终端在开机时,可先通过电路域(CS域)由归属位置寄存器查询与其对应的电路域呼叫补充业务配置,然后将其查询的配置作为IMS域的呼叫补充业务配置。从而使得CS域和IMS域的呼叫补充业务配置在开机时即达到一致,从而使终端本地存储的呼叫补充业务配置可在开机时即对于终端支持的所有网络类型均保持同步和一致。使得对于用户而言,终端上存储的呼叫补充业务配置即为针对所有通信网络类型均适用的配置内容,而无需再分门别类进行单独配置,从而提高了多种通信网络下的适配多种通信网络的能力较高。
同样,若终端通过电路域查询呼叫补充业务配置失败(不在2G网络和3G网络覆盖区域或信号不好的情况),则不对本地已有的呼叫补充业务配置进行修改。
在本实施例中,接收补充业务配置指令的步骤之前还包括:
接收业务配置展示指令,通过电路域由归属位置寄存器下载电路域呼叫补充业务配置;将所述下载得到的电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述呼叫补充业务配置。
上述步骤执行的详细的时序过程可参考如图4所示,图4展示了手机终端在用户进入呼叫补充业务配置的配置界面后,通过电路域与归属位置寄存器进行呼叫补充业务配置的整个时序过程。
例如,在使用Android系统的智能手机的应用场景中,如前所述,若用户打开了Android手机上的呼叫补充业务配置页面时,即输入了业务配置展示指令。终端即可调用Android系统提供的RIL框架中的通信接口函数,例如, queryCallWaiting的RIL通信接口函数,生成查询电路域呼叫等待业务配置信息的查询指令,并将其发送至归属位置寄存器,归属位置寄存器根据该指令查询与该终端对应的电路域呼叫等待业务配置(例如该业务的开启状态标识),然后通过移动交换中心返回给该终端。
终端接收到返回的电路域呼叫等待业务配置之后,即通过页面展示给用户,然后将其存储在本地并覆盖本地存储的呼叫等待业务配置,即可作为与多媒体子系统(IMS域)对应的呼叫补充业务配置。
在另一个实施例中,若步骤S108,根据配置反馈信息判断是否配置成功的步骤执行结果为判定配置失败,则可仍然将配置参数作为终端上的呼叫补充业务配置存储;但需要定期将终端上存储的呼叫补充业务配置上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
上述步骤执行的详细的时序过程可参考如图5所示,图5展示了手机终端在通过电路域在向归属位置寄存器上传电路域呼叫补充业务配置失败之后定时重新进行设置的整个时序过程。
也就是说,在该实施例中,若用户打开终端的呼叫补充业务配置界面进行配置时,通过电路域向归属位置寄存器上传的电路域呼叫补充业务配置得到的返回结果为设置失败或超时(不在2G或3G网络覆盖区域或者终端的信号不好),则仍然将用户输入的呼叫补充业务配置作为终端上的呼叫补充业务配置存储,但会定期向归属位置寄存器继续发送该呼叫补充业务配置,直至归属位置寄存器返回配置成功的配置反馈信息。
如上例中,若用户在本地将呼叫等待业务设置为开启状态,但通过RIL框架的通信接口函数setCallWaiting返回的设置结果为失败,则仍然在终端上将呼叫等待业务设置为开启状态,但仍然需要每隔预设的时间(例如10分钟,半小时,1小时等)调用RIL框架的通信接口函数setCallWaiting向归属位置寄存器发起将呼叫等待业务设置为开启状态的配置参数。如果终端移动到2G 或3G网络覆盖区域或其信号强度恢复后,即可接收到归属位置寄存器返回的配置成功的消息,从而结束定时调用setCallWaiting函数的逻辑。
采用该方案,可使得用户在任意环境下均可进行配置。例如,若用户位于密闭空间内时,若采用前述方案,则用户在该密闭空间中的呼叫补充业务配置过程由于无法通过电路域完成配置,因此,总是会提示配置失败,需要用户移动到信号强度较好的区域才能完成配置过程。而加入了该过程后,则在密闭空间中的用户仅需配置一次,而在该用户离开该密闭空间,信号强度恢复后,终端可自动通过电路域完成相应的配置,从而减少了用户配置的次数,提高了操作的便利性。
在另一个实施例中,若步骤S108,根据配置反馈信息判断是否配置成功的步骤执行结果为判定配置失败,则可仍然将配置参数作为终端上的呼叫补充业务配置存储;但需要检测网络切换事件,在检测到网络发生切换时,将终端上存储的全局呼叫补充业务配置上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。也就是说,在配置失败时,无需定时上传电路域呼叫补充业务配置,只需要在通信网络切换时上传电路域呼叫补充业务配置。
网络切换事件即终端所在的覆盖区域由LTE网络切换至2G或3G网络,或者覆盖区域由2G或3G网络切换至LTE网络时触发的系统事件。在检测到发生网络切换时,终端必然处于某个2G网络或者3G网络的覆盖之下(否则没有切换过程),因此电路域保持连通状态,此时将本地存储的呼叫补充业务配置发送至归属位置寄存器进行存储,即避免了前述定时发送电路域配置指令的配置过程中可能无谓发送多次的情况,从而减少了电路域发起通信的次数,对于移动设备而言,则耗电量减少,提高了续航能力。
在一个实施例中,还相应地提供了一种呼叫补充业务配置同步装置,如图6所示,包括:配置指令接收模块102、电路域配置模块104、反馈信息接收 模块106以及本地配置模块108,其中:
配置指令接收模块102,用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数。
电路域配置模块104,用于通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
反馈信息接收模块106,用于接收返回的配置反馈信息。
本地配置模块108,用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
在一个实施例中,如图7所示,呼叫补充业务配置同步装置还包括开机同步模块110,用于接收开机指令,通过电路域由所述归属位置寄存器下载电路域呼叫补充业务配置;将下载得到的电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
在一个实施例中,如图7所示,呼叫补充业务配置同步装置还包括配置展示模块112,用于接收业务配置展示指令,通过电路域由归属位置寄存器下载电路域呼叫补充业务配置;将下载得到的电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述终端上的呼叫补充业务配置。
在一个实施例中,开机同步模块110或配置展示模块112还用于调用无线接口层的通信接口函数,通过该函数由归属位置寄存器下载电路域呼叫补充业务配置。
在本实施例中,本地配置模块108还用于在配置失败时,丢弃该配置参数。
在另一个实施例中,本地配置模块108还用于在配置失败时,将所述配置参数作为终端上的呼叫补充业务配置存储;定期将终端上存储的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
在一个实施例中,本地配置模块108还用于在配置失败时,将配置参数作 为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将终端上存储的呼叫补充业务配置上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
图8是本发明实施例中的一种终端的结构示意图,如图8所示,该用户设备可以包括:至少一个处理器401,例如CPU,基带控制器等,至少一个移动通信射频组件403,存储器404,至少一个通信总线402。其中,通信总线402用于实现这些组件之间的连接通信。存储器404可以是高速RAM存储器,也可以是非易失的存储器(non-volatile memory),例如至少一个磁盘存储器。存储器404可选的还可以是至少一个位于远离前述处理器401的存储装置。存储器404中存储一组程序代码,且处理器401用于调用存储器中存储的程序代码,用于执行以下操作:
接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数;
通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
接收返回的配置反馈信息;
根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
可选的,处理器401在接收补充业务配置指令的步骤之前还包括:
接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
可选的,处理器401在接收输入的补充业务配置指令的步骤之前还包括:
接收业务配置展示指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充 业务配置存储,并展示所述终端上的呼叫补充业务配置。
可选的,处理器401在通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置的步骤为:
调用无线接口层的通信接口函数,通过该函数由所述归属位置寄存器下载所述电路域呼叫补充业务配置。
可选的,处理器401在根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,则丢弃所述配置参数。
可选的,处理器401在根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;
定期将终端上存储的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
可选的,处理器401在根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将终端上存储的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
在一个实施例中,为解决上述问题,还提出了一种呼叫补充业务配置同步系统,如图9所示,包括终端10和归属位置寄存器20,其中:
终端10用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
归属位置寄存器20用于通过移动交换中心向终端返回相应的配置反馈信息。
终端10还用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储在所述终端上。
在一个实施例中,如图10所示,呼叫补充业务配置同步系统还包括归属用户服务器30。
终端10还用于在切换至基于电路域的通信网络时,获取该终端10上存储的呼叫补充业务配置,将其上传至与终端10对应的归属用户服务器30存储。
归属用户服务器30还用于将该呼叫补充业务配置发送至与终端10对应的归属位置寄存器20作为电路域呼叫补充业务配置存储。
在一个实施例中,如图10所示,归属位置寄存器还20用于在终端10切换至基于多媒体子系统的通信网络时,将与终端10对应的电路域呼叫补充业务配置发送至与终端对应的归属用户服务器30。
归属用户服务器30还用于将接收到的与终端对应的电路域呼叫补充业务配置下发给终端10,由终端10将其作为终端上的呼叫补充业务配置存储。
在一个实施例中,为了提高呼叫补充业务配置的网络适配性,针对于上述呼叫补充业务配置同步系统,还提出了一种呼叫补充业务配置同步方法,该方法可依赖于计算机程序,该计算机程序可运行于符合冯诺依曼体系的计算机系统之上。该计算机系统可以是如图9所示的包含终端、归属位置寄存器的计算机系统或图10所示的包含终端、归属位置寄存器和归属用户服务器的计算机系统。
在本实施例中,具体的,该方法如图11所示,包括:
步骤S202,终端接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
步骤S204,归属位置寄存器通过移动交换中心向所述终端返回相应的配置反馈信息。
补充业务配置指令即为用于对补充业务进行配置的指令。例如开启或关闭呼叫等待业务的指令等。配置参数即为补充业务配置指令中包含的呼叫补充业务执行的参数。
在本实施例中,可展示统一的呼叫补充业务配置界面,该统一的配置界面用于配置适用于现有的所有移动网络类型的呼叫补充业务的配置参数。例如,对于呼叫等待业务,可通过勾选框(checkbox)进行配置。若用户选中了勾选框,即输入了开启呼叫等待业务的配置指令,输入的配置参数即为开启;若用户取消了勾选框,即输入了关闭呼叫等待业务的配置指令,输入的配置参数即为关闭。通过该统一的配置界面输入的适用于所有移动网络类型的配置参数即为终端上的呼叫补充业务配置,该终端上的呼叫补充业务配置存储在执行上述步骤的终端上,可适用于与多媒体子系统(IMS域)对应的4G网络或其他将呼叫补充业务配置存储在终端上的通信网络。
在本实施例中,终端可以前述输入的配置参数作为函数调用参数调用无线接口层(RIL,Radio Interface Layer)的通信接口函数,将该配置参数通过电路域发送给处于核心网的移动交换中心MSC,再由MSC发送至归属位置寄存器(HLR,Home Location Register)进行存储,存储在HLR中的与呼叫补充业务相关的配置参数即为电路域呼叫补充业务配置。
现有的智能手机等移动通信设备的操作系统(例如Android、Windows Mobile等)通常提供RIL框架性代码,其提供的通信接口函数在调用时,可控制移动通信设备的基带处理器进行无线信道的数据发送和接收工作,其发出的指令即通过电路域经过一系列网元发送至归属位置寄存器。
例如,在Android系统中,可通过调用RIL框架中的setCallWaiting函数(设置呼叫等待业务的RIL通信接口函数)生成相应的指令控制基带控制器将前述输入的配置参数经一系列电路域网元发送给归属位置寄存器进行存储。
归属位置寄存器(HLR)为2G或3G通信网络中,负责移动用户管理的数据库。存储所管辖用户的签约数据及移动用户的位置信息,可为至某终端的 呼叫提供路由信息。
在本实施例中,终端通过电路域上传配置参数的过程为:终端通过RIL接口将配置参数通过电路域的信道上传给基站控制器(BSC,Base Station Controller),再由基站控制器通过公共信道信令网络(CCS,Common Channel Signalling,在中国称为七号信令网)将其传输给移动交换中心(MSC,Mobile Switching Center),然后由移动交换中心将其发送至归属位置寄存器进行存储。
归属位置寄存器在根据接收到的MSC转发的配置参数后,将该配置参数存储在归属位置寄存器的数据库中,该配置参数即为电路域呼叫补充业务配置。然后归属位置寄存器可通过移动交换中心向终端返回配置成功的配置反馈信息,若归属位置寄存器存储失败,则可向终端返回配置失败的配置反馈信息。相应的,该配置反馈信息通过电路域上如前所述的一系列网元返回给终端,终端通过RIL层对其进行解析,即可获取配置反馈信息。
步骤S206,终端还根据配置反馈信息判断是否配置成功,若是,则将配置参数作为终端上的呼叫补充业务配置存储在终端上。
若配置反馈信息为配置成功,则终端存储该配置参数,存储在终端上的配置参数即为终端上的呼叫补充业务配置,也就是说不管是2G、3G还是4G网络,均按照该终端上的呼叫补充业务配置开展业务。在2G,3G网络中,该终端上的呼叫补偿业务配置即和与终端对应的归属位置寄存器中存储的电路域呼叫补偿业务配置相同,而在4G网络中,该终端上的呼叫补偿业务配置即可作为终端存储的与多媒体子系统对应的呼叫补充业务配置。而若配置反馈信息为失败或接收配置反馈信息超时,则判定为配置失败。
在一个实施例中,配置失败后可丢弃该配置参数。也就是说,在终端对应的归属位置寄存器存储电路域呼叫补偿业务配置失败时,终端存储的呼叫补偿业务配置不会被更改,从而可保持终端上存储的呼叫补偿业务配置与归属位置寄存器中存储的电路域呼叫补偿业务配置保持同步。还可提示用户因网络问题无法完成配置,建议用户移动到有网络覆盖的环境再行配置。
上述步骤执行的详细的时序过程可参考如图2所示,图2展示了步骤S202至步骤S206的整个时序过程。
也就是说,用户在终端上设置呼叫补充业务配置时,先通过电路域向其对应的归属位置寄存器上传终端上已存储的呼叫补充业务配置作为该终端的电路域呼叫补充业务配置,以供在2G或3G网络下使用该配置开展呼叫补充业务。若通过电路域呼叫补充业务配置上传成功,再在终端本地存储该呼叫补充业务配置,以供在4G的VoLTE网络下开展呼叫补充业务。从而使得终端本地存储的呼叫补充业务配置与该终端在其对应的归属位置寄存器上存储的电路域呼叫补充业务配置相同。用户仅需在终端上配置成功一次,即可同时完成不同通信网络下相应的配置;而即使用户在电路域配置失败,终端本地存储的呼叫补充业务配置也不会被更改,从而保证了不同通信网络下,呼叫补充业务配置的一致性,因此上述呼叫补充业务配置在多种通信网络下的适配多种通信网络的能力较高。
进一步的,在本实施例中,接收补充业务配置指令的步骤之前还包括:
接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;将下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
上述步骤执行的详细的时序过程可参考如图3所示,图3展示了手机终端开机之后通过电路域向其对应的归属位置寄存器上传电路域呼叫补充业务配置的整个时序过程。
在一个实施例中,通过电路域由归属位置寄存器下载与终端对应的电路域呼叫补充业务配置的步骤可具体为:
调用无线接口层的通信接口函数,通过该函数由归属位置寄存器下载电路域呼叫补充业务配置。
例如,在使用Android系统的智能手机的应用场景中,如前所述,Android手机在开机启动时,可在启动程序中使用Android系统提供的RIL框架中的通 信接口函数,例如,queryCallWaiting的RIL通信接口函数,生成查询呼叫等待业务配置信息的查询指令,并通过电路域将其发送至归属位置寄存器,归属位置寄存器根据该指令查询与该终端对应的电路域呼叫等待业务配置(例如该业务的开启状态标识),然后通过移动交换中心发送呼叫等待业务配置经BSC返回给该终端。
终端接收到返回的电路域呼叫等待业务配置之后,即可将其存储在本地,该存储在终端上的呼叫等待业务配置即可作为与多媒体子系统(IMS域)对应的用于4G网络或其他需要将呼叫等待业务配置存储在终端上的通信网络的呼叫补充业务配置。
也就是说,终端在开机时,可先通过电路域(CS域)由归属位置寄存器查询与其对应的电路域呼叫补充业务配置,然后将其查询的配置作为IMS域的呼叫补充业务配置。从而使得CS域和IMS域的呼叫补充业务配置在开机时即达到一致,从而使终端本地存储的呼叫补充业务配置可在开机时即对于终端支持的所有网络类型均保持同步和一致。使得对于用户而言,终端上存储的呼叫补充业务配置即为针对所有通信网络类型均适用的配置内容,而无需再分门别类进行单独配置,从而提高了多种通信网络下的适配多种通信网络的能力较高。
同样,若终端通过电路域查询呼叫补充业务配置失败(不在2G网络和3G网络覆盖区域或信号不好的情况),则不对本地已有的呼叫补充业务配置进行修改。
在本实施例中,还包括:
终端接收业务配置展示指令,通过电路域由归属位置寄存器下载电路域呼叫补充业务配置;将所述下载得到的电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述呼叫补充业务配置。
上述步骤执行的详细的时序过程可参考如图4所示,图4展示了手机终端在用户进入呼叫补充业务配置的配置界面后,通过电路域与归属位置寄存器进 行呼叫补充业务配置的整个时序过程。
例如,在使用Android系统的智能手机的应用场景中,如前所述,若用户打开了Android手机上的呼叫补充业务配置页面时,即输入了业务配置展示指令。终端即可调用Android系统提供的RIL框架中的通信接口函数,例如,queryCallWaiting的RIL通信接口函数,生成查询电路域呼叫等待业务配置信息的查询指令,并将其发送至归属位置寄存器,归属位置寄存器根据该指令查询与该终端对应的电路域呼叫等待业务配置(例如该业务的开启状态标识),然后通过移动交换中心返回给该终端。
终端接收到返回的电路域呼叫等待业务配置之后,即通过页面展示给用户,然后将其存储在本地并覆盖本地存储的呼叫等待业务配置,即可作为与多媒体子系统(IMS域)对应的呼叫补充业务配置。
在一个实施例中,若步骤S206中,终端根据配置反馈信息判断是否配置成功的步骤执行结果为判定配置失败,则可仍然将配置参数作为终端上的呼叫补充业务配置存储;但需要定期将终端上存储的呼叫补充业务配置上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。
上述步骤执行的详细的时序过程可参考如图5所示,图5展示了手机终端在通过电路域在归属位置寄存器上设置呼叫补充业务配置失败之后定时重新进行设置的整个时序过程。
也就是说,在该实施例中,若用户打开终端的呼叫补充业务配置界面进行配置时,通过电路域向归属位置寄存器上传的电路域呼叫补充业务配置得到的返回结果为设置失败或超时(不在2G或3G网络覆盖区域或者终端的信号不好),则仍然将用户输入的呼叫补充业务配置作为终端上的呼叫补充业务配置存储,但会定期向归属位置寄存器继续发送该呼叫补充业务配置,直至归属位置寄存器返回配置成功的配置反馈信息。
如上例中,若用户在本地将呼叫等待业务设置为开启状态,但通过RIL 框架的通信接口函数setCallWaiting返回的设置结果为失败,则仍然在终端上将呼叫等待业务设置为开启状态,但仍然需要每隔预设的时间(例如10分钟,半小时,1小时等)调用RIL框架的通信接口函数setCallWaiting向归属位置寄存器上传将呼叫等待业务设置为开启状态的配置参数。如果终端移动到2G或3G网络覆盖区域或其信号强度恢复后,即可接收到归属位置寄存器返回的配置成功的消息,从而结束定时调用setCallWaiting函数的逻辑。
采用该方案,可使得用户在任意环境下均可进行配置。例如,若用户位于密闭空间内时,若采用前述方案,则用户在该密闭空间中的呼叫补充业务配置过程由于无法通过电路域完成配置,因此,总是会提示配置失败,需要用户移动到信号强度较好的区域才能完成配置过程。而加入了该过程后,则在密闭空间中的用户仅需配置一次,而在该用户离开该密闭空间,信号强度恢复后,终端可自动通过电路域完成相应的配置,从而减少了用户配置的次数,提高了操作的便利性。
进一步的,在本实施例中,根据配置反馈信息判断是否配置成功的步骤执行结果为判定配置失败,则可仍然将配置参数作为终端上的呼叫补充业务配置存储;但需要检测网络切换事件,在检测到网络发生切换时,将终端上存储的呼叫补充业务配置上传至移动交换中心,由移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中。也就是说,在配置失败时,无需定时上传电路域呼叫补充业务配置,只需要在通信网络切换时上传电路域呼叫补充业务配置。
网络切换事件即终端所在的覆盖区域由LTE网络切换至2G或3G网络,或者覆盖区域由2G或3G网络切换至LTE网络时触发的系统事件。在检测到发生网络切换时,终端必然处于某个2G网络或者3G网络的覆盖之下(否则没有切换过程),因此电路域保持连通状态,此时将本地存储的呼叫补充业务配置通过发送至归属位置寄存器进行存储,即避免了前述定时发送电路域配置指令的配置过程中可能无谓发送多次的情况,从而减少了电路域发起通信的次 数,对于移动设备而言,则耗电量减少,提高了续航能力。
在一个实施例中,呼叫补充业务配置同步方法还包括:
终端在切换至基于电路域的通信网络时,获取该终端上存储的呼叫补充业务配置,将其上传至与所述终端对应的归属用户服务器存储。
归属用户服务器将该呼叫补充业务配置发送至与所述终端对应的归属位置寄存器存储。
归属用户服务器(HSS,Home Subscriber Server)即为LTE网络中用于存储用户配置的服务器,为HLR的升级版,其与移动交换中心MSC连接,详见图10。当随着终端的移动由LTE网络覆盖区域进入传统的2G、3G网络覆盖区域时,即发生覆盖区域切换。如图12所示,终端先将本地存储的呼叫补充业务配置经IMS域基站eNodeB(即Evolved Node B,即演进型Node B简称eNB,LTE网络中的基站)以及IMS域的SGSN(Serving GPRS SUPPORT NODE,LTE网络中的移动交换中心)上传至HSS进行存储,HSS再通过SGSN将该呼叫补充业务配置发送至该终端切换至的服务区对应的HLR进行存储(在另一个实施例中,也可由HSS直接与HLR同步,两种同步方式可参考图10中的虚线连接)。当终端需要在传统的2G或3G网络下展开呼叫补充业务时,其对应的MSC即可根据该HLR上存储的呼叫补充业务配置开展业务。
进一步的,在本实施例中,该呼叫补充业务配置同步方法还包括:
归属位置寄存器在终端切换至基于多媒体子系统的通信网络时,将与终端对应的电路域呼叫补充业务配置发送至与所述终端对应的归属用户服务器;
归属用户服务器还用于将接收到的与所述终端对应的呼叫补充业务配置下发给所述终端,由所述终端将其作为终端上的呼叫补充业务配置存储。
在终端由传统的2G、3G网络覆盖区域进入LTE网络覆盖区域时,也发生覆盖区域切换。如图13所示,在发生切换时,先由终端对应的归属位置寄存器HLR将该终端在其上存储的呼叫补充业务配置由MSC发送至该终端切换至的服务区对应的归属用户服务器HSS上进行存储。该归属用户服务器HSS 再通过IMS域将该呼叫补充业务配置下发到终端上进行同步。当终端需要在LTE网络下开展呼叫补充业务时,其对应的网元即可根据该终端上存储的呼叫补充业务配置开展业务。
也就是说,若现有的运营商提供了网络存储呼叫补充业务的接口,即在归属用户服务器HSS上提供了存储终端上的呼叫补充业务配置的接口,则终端可以保持与HSS上存储的呼叫补充业务配置的同步。而在不同网络环境下进行切换时,用户在不同网络环境下进行的呼叫补充业务的配置可由属于不同网络的归属用户服务器和归属位置寄存器进行同步。对于用户而言,终端上无需做任何修改,且也仅需在终端上进行一次配置,即可通过HSS和HLR的同步适配所有网络类型,从而提高了终端上存储的呼叫补充业务配置的适配多种通信网络的能力。
本发明实施例还提出了一种计算机存储介质,该计算机存储介质存储有程序,该程序执行时执行包括本发明实施例结合图1所描述的呼叫补充业务配置同步方法中的部分或全部的步骤。
上述呼叫补充业务配置同步方法中,在用户进行本地的呼叫补充业务配置时,先通过电路域在该用户的终端对应的归属位置寄存器上进行配置,然后再根据电路域的配置结果选择本地的配置是否生效,使得用户在本地的配置(针对IMS域的呼叫补充业务)与归属位置寄存器上存储的配置(针对CS域的呼叫补充业务配置)能够保持同步状态,从而使得用户在本地的配置能够同时适用LTE网络和传统的2G、3G网络,提高了终端上存储的呼叫补充业务配置的适配多种通信网络的能力。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算 机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (20)

  1. 一种呼叫补充业务配置同步方法,包括:
    接收输入的补充业务配置指令,获取所述补充业务配置指令对应的配置参数;
    通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
    接收返回的配置反馈信息;
    根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
  2. 根据权利要求1所述的呼叫补充业务配置同步方法,其特征在于,所述接收输入的补充业务配置指令的步骤之前还包括:
    接收开机指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
    将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
  3. 根据权利要求1所述的呼叫补充业务配置同步方法,其特征在于,所述接收输入的补充业务配置指令的步骤之前还包括:
    接收业务配置展示指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
    将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示终端上的呼叫补充业务配置。
  4. 根据权利要求2或3所述的呼叫补充业务配置同步方法,其特征在于,所述通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置的步骤为:
    调用无线接口层的通信接口函数,通过该函数由所述归属位置寄存器下载所述电路域呼叫补充业务配置。
  5. 根据权利要求1所述的呼叫补充业务配置同步方法,其特征在于,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
    若配置失败,则丢弃所述配置参数。
  6. 根据权利要求1所述的呼叫补充业务配置同步方法,其特征在于,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
    若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;
    定期将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
  7. 根据权利要求1所述的呼叫补充业务配置同步方法,其特征在于,所述根据所述配置反馈信息判断是否配置成功的步骤之后还包括:
    若配置失败,将所述配置参数作为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
  8. 一种呼叫补充业务配置同步装置,其特征在于,包括:
    配置指令接收模块,用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数;
    电路域配置模块,用于通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
    反馈信息接收模块,用于接收返回的配置反馈信息;
    本地配置模块,用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储。
  9. 根据权利要求8所述的呼叫补充业务配置同步装置,其特征在于,所述装置还包括开机同步模块,用于接收开机指令,通过电路域由所述归属位置 寄存器下载所述电路域呼叫补充业务配置;
    将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储。
  10. 根据权利要求7所述的呼叫补充业务配置同步装置,其特征在于,所述装置还包括配置展示模块,用于接收业务配置展示指令,通过电路域由所述归属位置寄存器下载所述电路域呼叫补充业务配置;
    将所述下载得到的所述电路域呼叫补充业务配置作为终端上的呼叫补充业务配置存储,并展示所述终端上的呼叫补充业务配置。
  11. 根据权利要求8或9所述的呼叫补充业务配置同步装置,其特征在于,所述开机同步模块或配置展示模块还用于调用无线接口层的通信接口函数,通过该函数由所述归属位置寄存器下载所述电路域呼叫补充业务配置。
  12. 根据权利要求8所述的呼叫补充业务配置同步装置,其特征在于,所述本地配置模块还用于在配置失败时,丢弃所述配置参数。
  13. 根据权利要求8所述的呼叫补充业务配置同步装置,其特征在于,所述本地配置模块还用于在配置失败时,将所述配置参数作为终端上的呼叫补充业务配置存储;定期将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
  14. 根据权利要求8所述的呼叫补充业务配置同步装置,其特征在于,所述本地配置模块还用于在配置失败时,将所述配置参数作为终端上的呼叫补充业务配置存储;在检测到网络发生切换时,将所述终端上的呼叫补充业务配置上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到所述归属位置寄存器中。
  15. 一种呼叫补充业务配置同步系统,其特征在于,包括终端、归属位置寄存器,其中:
    所述终端用于接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
    所述归属位置寄存器通过移动交换中心向所述终端返回相应的配置反馈信息;
    所述终端还用于根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储在所述终端上。
  16. 根据权利要求15所述的呼叫补充业务配置同步系统,其特征在于,所述系统还包括归属用户服务器;
    所述终端还用于在切换至基于电路域的通信网络时,获取该终端上存储的终端上的呼叫补充业务配置,将其上传至与所述终端对应的归属用户服务器存储;
    所述归属用户服务器还用于将所述终端上的呼叫补充业务配置发送至与所述终端对应的归属位置寄存器作为电路域呼叫补充业务配置存储。
  17. 根据权利要求16所述的呼叫补充业务配置同步系统,其特征在于,所述归属位置寄存器还用于在所述终端切换至基于多媒体子系统的通信网络时,将与所述终端对应的电路域呼叫补充业务配置发送至与所述终端对应的归属用户服务器;
    所述归属用户服务器还用于将接收到的与所述终端对应的电路域呼叫补充业务配置下发给所述终端,由所述终端将其作为终端上的呼叫补充业务配置存储。
  18. 一种呼叫补充业务配置同步方法,包括:
    终端接收输入的补充业务配置指令,获取所述业务配置指令对应的配置参数,通过电路域将所述配置参数上传至移动交换中心,由所述移动交换中心将其作为电路域呼叫补充业务配置存储到归属位置寄存器中;
    归属位置寄存器通过移动交换中心向所述终端返回相应的配置反馈信息;
    终端还根据所述配置反馈信息判断是否配置成功,若是,则将所述配置参数作为终端上的呼叫补充业务配置存储在所述终端上。
  19. 根据权利要求18所述的呼叫补充业务配置同步方法,其特征在于,所述方法还包括:
    终端在切换至基于电路域的通信网络时,获取该终端上存储的呼叫补充业务配置,将其上传至与所述终端对应的归属用户服务器存储;
    归属用户服务器将所述终端上的呼叫补充业务配置发送至与所述终端对应的归属位置寄存器存储。
  20. 根据权利要求19所述的呼叫补充业务配置同步方法,其特征在于,所述方法还包括:
    归属位置寄存器在所述终端切换至基于多媒体子系统的通信网络时,将与所述终端对应的电路域呼叫补充业务配置发送至与所述终端对应的归属用户服务器;
    归属用户服务器还用于将接收到的与所述终端对应的电路域呼叫补充业务配置下发给所述终端,由所述终端将其作为终端上的呼叫补充业务配置存储。
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