WO2014177019A1 - 一种接入制式的配置方法、设备及*** - Google Patents

一种接入制式的配置方法、设备及*** Download PDF

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Publication number
WO2014177019A1
WO2014177019A1 PCT/CN2014/076216 CN2014076216W WO2014177019A1 WO 2014177019 A1 WO2014177019 A1 WO 2014177019A1 CN 2014076216 W CN2014076216 W CN 2014076216W WO 2014177019 A1 WO2014177019 A1 WO 2014177019A1
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WO
WIPO (PCT)
Prior art keywords
functional unit
access system
access
access node
new
Prior art date
Application number
PCT/CN2014/076216
Other languages
English (en)
French (fr)
Inventor
李铕
曾昆
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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 EP14791601.9A priority Critical patent/EP2991407A4/en
Priority to JP2016509284A priority patent/JP6159019B2/ja
Publication of WO2014177019A1 publication Critical patent/WO2014177019A1/zh
Priority to US14/923,083 priority patent/US20160044588A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08Access point devices
    • H04W88/10Access point devices adapted for operation in multiple networks, e.g. multi-mode access points

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method, device, and system for configuring an access system.
  • the prior art solution provides a method for configuring a base station for multiple access systems, by feeding back the resource capabilities of the base station, and correspondingly configuring according to the resource capabilities.
  • the access system, and the base station is allocated resource information supporting the access system to meet the support for multiple access systems, but there is no specific implementation manner for multiple use and configuration methods of the access modules corresponding to multiple access systems.
  • how to apply the new module introduced after the version upgrade in the wireless access technology to the current access system and configuration lacks a practical method.
  • the prior art has the following problems: by providing a method in which an access node automatically loads different access systems according to specific needs, in the prior art, the access node does not fully utilize the functional units in the module.
  • the radio access system (RAT) supported by the access node is fixed, which is disadvantageous for the access node to introduce a new module to implement the wireless access standard upgrade, thereby preventing the network resource from being reused. This leads to a waste of network resources.
  • RAT radio access system
  • Embodiments of the present invention provide a method, a device, and a system for configuring an access system, which are capable of configuring a functional unit according to multiple access systems, and solving the problem of resource waste caused by not being able to fully utilize network resources.
  • a method for configuring an access system including:
  • the registration request includes a functional unit list or a category identifier of a module in the access node, where the functional unit list includes a list of all functional units of the new module in the access node or a new a list of new functional units added by the module,
  • the class identifier of the module is used to distinguish a module that includes different functional units in the access node; identify an access system of the access node according to the functional unit list or a category identifier of the module, and generate an access system configuration. information;
  • the new module in the access node includes at least one functional unit and a functional unit list corresponding to the functional unit or a category identifier of the module.
  • the first aspect or the first possible implementation manner specifically includes: determining, according to the functional unit list or the class identifier of the module, an access system of the access node And generate access system configuration information, including:
  • the class identifier identifies a new functional unit in the access node, and matches a functional unit required by the current access system with each functional unit included in the access node;
  • recording the access node can support the access system and generate access system configuration information.
  • the first aspect or the first possible implementation manner specifically includes: determining, according to the functional unit list or the category identifier of the module, an access system of the access node. And generating the access system configuration information, further comprising: sending the query message to the network side device if the access system is not recognized; receiving the function call message sent by the network side device according to the query message, the function The invocation message includes an identifier of the access system to which the functional unit belongs and a full function list of the access system;
  • the third possible implementation manner includes: the accessing system configuration information, including:
  • the third possible implementation manner includes: the query message includes: a list of functional units included in the new module or a new functional unit list of the new module , or the category identifier of the new module.
  • the method further includes:
  • the identification of the system selects an access node supporting the new access system and a functional unit supporting the new access system;
  • the sixth possible implementation manner includes: the new access system information includes:
  • the version identifier of the access system the full function list of the version of the access system, and the protocol stack software corresponding to the function unit.
  • the sixth possible implementation manner includes: the configuration information of the new access system includes: a version identifier of the access system, and a required function of the access system The calling sequence of the unit and the functional unit, and the functional unit algorithm configuration and parameter configuration and the protocol stack software corresponding to the functional unit.
  • the second aspect provides a configuration method of the access system, including: sending a registration request to the control device, where the registration request includes a function unit list or a category identifier of the module in the access node, where the function unit list includes the a list of all the functional units of the new module in the access node or a new functional unit list of the new module, where the category identifier of the module is used to distinguish modules of the access node that contain different functional units;
  • the second aspect specifically includes that the new module in the access node includes at least one functional unit and a functional unit list corresponding to the functional unit or a category identifier of the module.
  • the second aspect or the first possible implementation manner includes: before the sending the registration request to the control device, the method further includes:
  • the second aspect specifically includes: receiving, by the control device, the access system configuration information corresponding to the module in the access node generated according to the functional unit list, and according to the The access system configuration information is configured to configure a functional unit in the access node, and further includes:
  • the access node selects a functional unit required by the access system, records the calling sequence of the functional unit, and generates configuration information of the functional unit;
  • the access node identifies a functional unit required by the access system, and records a calling sequence of the functional unit and generates configuration information of the functional unit.
  • the third possible implementation manner is specifically included, after the recording the calling sequence of the functional unit and the generating the configuration information of the functional unit, the method further includes:
  • the configuration information completes configuration of the functional unit, and the internal proxy identification node is configured to register and configure a functional unit in the access node.
  • the third aspect provides a method for preparing an access system, including: receiving a query message sent by a control device, and sending a function call message of a current access system according to the query message, so that the control device invokes according to the function
  • the message identifies an access system that the functional unit in the access node can support;
  • the third aspect specifically includes: the receiving, by the receiving, the query message sent by the control device, and sending the function call message of the current access system according to the query message, including:
  • the network side device searches for an access system corresponding to the functional unit according to the newly added function unit list carried in the query message, and according to the identifier of the access system corresponding to the function unit and the full function of the access system List generation function call message;
  • the network side device searches for a function unit corresponding to the module according to the module type identifier carried in the query message, and generates a function call message according to the identifier of the access system corresponding to the function unit and the full function list of the access system. ;
  • the category identifier of the module is used to distinguish a module that includes different functional units in the access node.
  • the method further includes:
  • the third possible implementation manner is specifically included, where the access information of the new access system includes:
  • the version identifier of the access system the full function list of the version of the access system, and the protocol stack software corresponding to the function unit.
  • a control device including:
  • a receiving unit configured to receive a registration request of an access node, where the registration request includes a function unit list or a class identifier of the module, where the function unit list includes all the new modules in the access node a list of functional units or a list of new functional units added by the new module, the category identifier of the module is used to distinguish modules of the access node that contain different functional units;
  • a configuration unit configured to identify an access system of the access node according to the functional unit list received by the receiving unit or a class identifier of the module, and generate access system configuration information
  • a sending unit configured to send the access system configuration information configured by the configuration unit to the access node, so that the access node is configured to correspond to the access node according to the access system configuration information.
  • the fourth aspect specifically includes that the new module in the access node includes at least one functional unit and a functional unit list corresponding to the functional unit or a category identifier of the module.
  • the configuration unit further includes:
  • a matching subunit configured to record a new functional unit in the access node according to the functional unit list, and match each functional unit included in the access node with a functional unit required by a current access system ;
  • the matching subunit is further configured to identify a new functional unit in the access node according to the category identifier of the module, and use the functional unit required by the current access system and each functional unit included in the access node. Matching;
  • the matching subunit is further configured to: if the functional unit list of the access system matches the functional unit in the access node, record that the access node can support the access system and generate an access standard Configuration information.
  • the configuration unit further includes: a configuration subunit, configured to: if the control device cannot identify the access system And sending a query message to the network side device; the acquiring subunit, configured to receive a function call message sent by the network side device according to the query message, where the function call message includes an identifier and access of the access system to which the functional unit belongs Full-featured list of standards;
  • An identification subunit configured to identify, according to the function invocation message, an access system supported by the functional unit in the access node;
  • a communication subunit configured to receive an activation command sent by the network side device to generate access system configuration information.
  • the third possible implementation manner is specifically included, where the access system configuration information includes:
  • the identifier of the access system The identifier of the access system, the calling sequence of the required functional unit of the new module, and the algorithm configuration and parameter configuration of the functional unit.
  • the third possible implementation manner is specifically included, the query message includes:
  • control device further includes:
  • the receiving unit is further configured to receive new access system information sent by the network side device, and identify and record the access node for the new according to the new access system information. Supporting capabilities of the access system;
  • the receiving unit is further configured to receive an access system activation command sent by the network side device, where the access system activation command is used to activate the new access system information received by the control device, so that the control device An access node supporting the new access system and a functional unit supporting the new access system can be selected according to the identifier of the new access system;
  • the sending unit is further configured to send configuration information of the new access system to the access node.
  • the sixth possible implementation manner includes: the new access system information includes:
  • the version identifier of the access system the full function list of the version of the access system, and the protocol stack software corresponding to the function unit.
  • the sixth possible implementation manner includes: the configuration information of the new access system includes: a version identifier of the access system, and a required function of the access system The calling sequence of the unit and the functional unit, and the functional unit algorithm configuration and parameter configuration and the protocol stack software corresponding to the functional unit.
  • an access node including:
  • a sending unit configured to send a registration request to the control device, where the registration request includes a functional unit list or a category identifier of the module in the access node, where the functional unit list includes a list of all functional units of the new module in the access node Or a new functional unit list added by the new module, where the category identifier of the module is used to distinguish modules of the access node that include different functional units;
  • a receiving unit configured to receive a registration request response message sent by the control device according to the registration request
  • the receiving unit is further configured to receive an access system configuration information that is generated by the control device according to the function unit list and that is corresponding to the module in the access node, and use the access system configuration information to access the
  • the functional units inside the node are configured.
  • the new module in the access node includes at least one functional unit and a functional unit list corresponding to the functional unit or a category identifier of the module.
  • the access node further includes:
  • a registration unit configured to register a list of functional units included in the new module or identify a category identifier of the new module before sending the registration request to the control device.
  • the receiving unit includes:
  • An identification subunit configured to identify a functional unit required by the access system, and record a calling sequence of the functional unit and generate configuration information of the functional unit.
  • the sending unit further includes:
  • a configuration subunit configured to record the calling sequence of the functional unit and generate configuration information of the functional unit, and send the configuration information to the functional unit by using an internal proxy identification node of the access node to complete the A configuration of a functional unit, the internal proxy identifying node for registering and configuring functional units in the access node.
  • the sixth aspect provides a network side device, including:
  • a communication unit configured to receive a query message sent by the control device, and send a function call message of the current access system according to the query message, so that the control device identifies, according to the function call message, a functional unit that the access node can support Access system
  • a sending unit configured to send an activation command to the control device, so that the control device selects an access node that supports the access system according to the activation command, and/or generates an access system configuration information corresponding to the functional unit.
  • the sixth aspect specifically includes: the communication
  • the unit includes:
  • Querying a sub-unit configured to search for an access system corresponding to the functional unit according to the newly added functional unit list carried in the query message, and according to the identifier of the access system and the access system corresponding to the functional unit Function list generation function call message;
  • a sending subunit configured to send the function invocation message generated by the query subunit to the control device
  • Querying a subunit configured to search for a functional unit corresponding to the module according to the module category identifier carried in the query message, and generate a function call according to the identifier of the access system corresponding to the function unit and the full function list of the access system a sending subunit, configured to send the function invocation message generated by the query subunit to the control device.
  • the category identifier of the module is used to distinguish a module that includes different functional units in the access node.
  • the network side device further includes:
  • a configuration unit configured to send a new access system, and send the access system information of the new access system to the control device, where the sending unit is configured to send an activation corresponding to the new access system a command, so that the control device selects an access node and/or a corresponding functional unit corresponding to the access system according to the activation command.
  • the third possible implementation manner is specifically included, where the access information of the new access system includes:
  • the version identifier of the access system the full function list of the version of the access system, and the protocol stack software corresponding to the function unit.
  • a communication system including: a control device, at least one access node, and a network side device, where The control device is any one of the control devices described in any one of the possible implementation manners of the fourth aspect, wherein the at least one access node is any one of the access nodes described in any one of the possible implementation manners of the fifth aspect,
  • the network side device is any one of the network side devices described in any one of the possible implementation manners of the sixth aspect.
  • the control device queries the network side device, and configures the corresponding functional unit access system configuration for the access node according to the wireless access standard information provided by the network side device.
  • the information through the configuration of the functional unit corresponding to the wireless access system in the access node, enables the functional unit to be applicable to multiple wireless access systems, and can save the configuration information of the new wireless access standard through the network side device, thereby
  • the functional unit can be reused according to the corresponding multiple access systems, thereby saving network resources and solving the problem of resource waste caused by not being able to fully utilize network resources.
  • FIG. 1 is a schematic flowchart of a configuration method of an access system according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of another method for configuring an access system according to an embodiment of the present invention
  • FIG. 3 is a schematic flowchart of still another method for configuring an access system according to an embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of a method for configuring an access system according to another embodiment of the present invention.
  • FIG. 5 is a schematic flowchart of a configuration method of an access system according to another embodiment of the present invention.
  • FIG. 6 is a schematic flowchart diagram of a configuration method of an access system according to still another embodiment of the present invention
  • FIG. 7 is a schematic flowchart diagram of still another method for configuring an access system according to an embodiment of the present invention
  • FIG. 8 is a schematic structural diagram of a control device according to an embodiment of the present invention
  • FIG. 9 is a schematic structural diagram of another control device according to an embodiment of the present invention
  • FIG. 11 is a schematic structural diagram of an access node according to an embodiment of the present invention
  • FIG. 12 is a schematic structural diagram of another access node according to an embodiment of the present invention
  • FIG. 14 is a schematic structural diagram of still another access node according to an embodiment of the present invention
  • FIG. 15 is a schematic diagram of a network side device according to an embodiment of the present invention
  • FIG. 16 is a schematic structural diagram of another network side device according to an embodiment of the present invention
  • FIG. 17 is a schematic structural diagram of still another network side device according to an embodiment of the present invention.
  • FIG. 18 is a schematic structural diagram of a communication system according to an embodiment of the present invention.
  • the entity performing the communication may be any entity in the access network and the core network, such as an evolved base station (eNB) and a signaling gateway (Signaling Gateway, referred to as S).
  • eNB evolved base station
  • S Signaling Gateway
  • -GW Packet Gateway
  • PGW Packet Gateway
  • UMTS Node B UMTS Node B
  • RNC Radio Network Controller
  • SGSN Serving GPRS SUPPORT NODE
  • gateway GPRS support node Gateway GPRS Support Node, GGSN for short.
  • the wireless access system for example: Wireless Fidelity (WIFI), long-term Long Term Evolution (LTE), third-generation mobile communication technology (3rd-generation, 3G), etc.
  • WIFI Wireless Fidelity
  • LTE long-term Long Term Evolution
  • 3G third-generation mobile communication technology
  • the access node selects the corresponding module according to multiple wireless access systems, and according to the specific functions of the functional units in the module, and The calling sequence of the function unit is selected and used.
  • the present invention provides a configuration method of the access system based on the wireless access technology. On the control device side, as shown in FIG. 1, the following processes are included:
  • the control device receives a registration request of the access node.
  • the registration request includes a list of functional units in the access node, and the functional unit list includes a list of all functional units of the new module in the access node or a new functional unit list of the new module or a category identifier of the module, where the functional unit list includes A list of functional units of a new module in the ingress node or a list of new functional units added to the new module.
  • the class identifier of the module is used to distinguish modules in the access node that contain different functional units.
  • the control device After receiving the registration request of the access node, the control device records the function of the access point, (Access Point, AP), and triggers the operation of identifying the Radio Access Technology (RAT), and then feeds back the module to the AP.
  • the request response message is registered, so that the AP waits for the control device to send the access system configuration information of the corresponding module according to the module registration request response message.
  • the new module in the access node includes at least one functional unit and a category identifier of the functional unit list or module corresponding to the functional unit.
  • the control device identifies an access system of the access node according to the function unit list or the category identifier of the module, and generates access system configuration information.
  • the control device determines, according to the registration request, whether the functional unit included in the module in the access node supports the current access system, and specifically includes:
  • control device records the new functional unit in the access node according to the functional unit list, and matches the functional unit required by the current access system with each functional unit included in the access node.
  • the control device identifies the new functional unit in the access node according to the category identifier of the module, and the functional unit required by the current access system and each function included in the access node The unit is matched. b. If the functional unit list of the current access system matches the functional unit in the access node, the access node is recorded to support the current access system and generate access system configuration information.
  • the control device sends the access system configuration information to the access node, so that the access node configures an access system corresponding to the access node according to the access system configuration information.
  • the control device Controller sends the access system configuration information to the access node according to the received activation command, where the access system configuration information includes: a radio access (Radios Access Technology, RAT) identifier, and the radio access system RAT required The calling sequence of functional units and functional units, as well as functional unit algorithm configuration and parameter configuration.
  • RAT Radio Access Technology
  • the access systems here include: Wireless Fidelity WIFI, Long Term Evolution (LTE), and third-generation mobile communication technology (3rd-generation, 3G) type of wireless access system.
  • LTE Long Term Evolution
  • 3G third-generation mobile communication technology
  • the access node sends a registration request to the control device.
  • the registration request includes a functional unit list or a category identifier of the module in the access node, where the functional unit list includes a list of all functional units of the new module in the access node or a new functional unit list of the new module, and the category identifier of the module Used to distinguish modules that contain different functional units in an access node.
  • the new module in the access node includes at least one functional unit and a functional unit list of the corresponding functional unit or a category identifier of the module.
  • the registration request sent by the access node to the control device includes: a list of all functional units of the new module inserted in the Access Point (AP), or a new functional unit list added by the new module, or a category identifier of the module.
  • AP Access Point
  • the module in the access node includes at least one functional unit, wherein the type of the functional unit and the calling sequence of the functional unit are different, so that the same functional unit can be applied to multiple access systems, and the functional unit can be a function or a hardware. Or a processing unit with both hardware and software capabilities.
  • the access node receives a registration request response message sent by the control device according to the registration request.
  • the access node receives the access system configuration information of the module in the corresponding access node that is generated by the control device according to the function unit list, and configures the functional unit inside the access node according to the access system configuration information.
  • the access node identifies the functional unit required by the internal agent according to the received access system configuration information, records the calling sequence of the functional unit, and completes the configuration of the corresponding functional unit.
  • Network side device side As shown in Figure 3, it includes:
  • the network side device receives the query message sent by the control device, and sends a function call message of the current access system according to the query message, so that the control device identifies the access system supported by the functional unit in the access node according to the function call message.
  • the parameter message that the network side device sends the current access system according to the query message is:
  • the network side device searches for an access system corresponding to the functional unit according to the newly added function unit list carried in the query message, and generates a function call message according to the identifier of the access system corresponding to the function unit and the full function list of the access system;
  • the network side device searches for a function unit corresponding to the module according to the module type identifier carried in the query message, and generates a function call message according to the identifier of the access system corresponding to the function unit and the full function list of the access system; sending the function call message To the control device.
  • the network side device sends an activation command to the control device, so that the control device selects an access node that supports the access system according to the activation command and/or generates access system configuration information of the corresponding function unit.
  • the activation command sent by the network side device to the control device is the corresponding wireless access.
  • the system is configured to trigger the control device to generate access system configuration information of the functional unit in the access node corresponding to the RAT.
  • the configuration method of the access system provided by the embodiment of the present invention, and configuring the corresponding functional unit access standard configuration information for the access node according to the access standard information provided by the network side device
  • the configuration of the functional unit corresponding to the access system in the access node enables the functional unit to be applied to multiple access systems, and the configuration information of the new access system can be saved by the network side device, thereby being able to respond according to the corresponding
  • the multiple access systems implement functional unit reuse, thereby saving network resources and solving the problem of resource waste caused by not being able to fully utilize network resources.
  • an embodiment of the present invention provides a configuration method of an access system, as shown in FIG. 4 , which is a control device.
  • the functional unit process selected by the access system in the access node is as follows:
  • the Access Point (AP) registration function unit list takes an example of all functional unit lists of the module, wherein when the access node has a new module inserted, the internal proxy identification node of the access node registers the new module. , where the registration of the new module contains a list of all functional units of the new module.
  • the internal proxy identification node in the access node is used to register and configure functional units in the access node.
  • the new module in the access node includes at least one functional unit and a functional unit list of the corresponding functional unit.
  • the access node sends a registration request to the control device.
  • the registration request includes module function parameters in the access node.
  • the registration request of the new module reported by the access node AP to the control device Controller includes:
  • the module here contains at least one functional unit, and the calling sequence of the functional units in different Radio Access Technology (RAT) modules is also different.
  • RAT Radio Access Technology
  • the control device receives a registration request of the access node.
  • the control device receives the request message of the access node, and records the access node (Access The function of the Point, AP) triggers the access system capability identification operation, and feeds back the module registration request corresponding message to the access node.
  • the access node Access The function of the Point, AP
  • the control device After the control device receives the registration request of the access node, the control device sends a registration request response message to the access node, where the registration request response message indicates that the control device side has received the registration request sent by the access node, and performs the Identification of functional units in the access node and generation of configuration parameters of the corresponding functional units.
  • the access node receives a registration request response message sent by the control device according to the registration request.
  • the control device identifies an access system of the access node according to the functional unit list, and generates access system configuration information.
  • control device Controller records the new functional unit of the AP, and matches the functional unit that the AP has with the functional unit list of the current RAT. If it is identified that the functional unit of the access node matches the functional unit required by the current RAT, The recording AP has the support capability for the RAT, and waits for the network side device to send an activation command.
  • control device If the control device cannot identify the access system, send a query message to the network side device.
  • control device If the control device does not recognize whether the functional unit in the AP supports the RAT, the control device sends an inquiry message to the network side device, so as to configure the AP according to the parameter message sent by the network side device.
  • the query message sent by the control device includes: a list of all functional units of the new module, or a list of new functional units added by the new module.
  • the network side device receives the query message sent by the control device, and sends a function call message of the current access system according to the query message, so that the control device identifies the access system supported by the functional unit in the access node according to the function call message.
  • the network side device takes the database as an example.
  • the database searches for the RAT corresponding to the functional unit according to the newly added functional unit list in the RAT function query message, and sends the identifier of the RAT to which the functional unit belongs and the RAT full function list to the controller.
  • the control device receives a function call message sent by the network side device, and identifies, according to the function call message, an access system that the functional unit in the access node can support.
  • the function call message includes an identifier and an access system of the access system to which the functional unit belongs. Full-featured list.
  • the function call message of the current radio access system received by the control device Controller is an identifier of the RAT to which the functional unit in the AP belongs and a full function list of the RAT.
  • the network side device takes a database as an example, where the control device Controller receives the new RAT information sent by the database, and identifies the RAT that the functional unit can support according to the functional unit that the AP has.
  • the process may be performed when the control device receives the RAT activation command; or may be triggered to identify the capability of supporting the RAT after the new functional unit of the AP is registered; After the database is configured with new RAT information, the network side triggers to determine whether the AP has the capability of supporting the RAT.
  • the network side device sends an activation command to the control device, so that the control device selects an access node that supports the access system according to the activation command and/or generates access system configuration information of the corresponding function unit.
  • the network side device takes a database as an example, wherein the database may also be a traditional network management device (for example, a router, a switch), or a separate device; the specific RAT activation command may be sent by a database or by a network management device.
  • the database may also be a traditional network management device (for example, a router, a switch), or a separate device; the specific RAT activation command may be sent by a database or by a network management device.
  • the control device sends the access system configuration information to the access node, so that the access node configures an access system corresponding to the access node according to the access system configuration information.
  • the control device selects an access node supporting the access system and the corresponding functional unit by generating an activation command sent by the network side device, and generates access system configuration information, and sends the access system configuration information to the access node.
  • the network side device takes the database as an example, and the control device Controller can periodically query the network side device to control the device to perform the identification of the capability of the access node to support the RAT.
  • the controller after receiving the activation command of the RAT sent by the database, the controller selects an AP that supports the RAT according to the RAT identifier, and a corresponding functional unit on the AP, and generates access system configuration information that is sent to the AP.
  • the activation command received by the control device is provided by the network side device at step 409 or based on the method provided in step 409. 411.
  • the access node receives the access system configuration information of the module in the corresponding access node that is generated by the control device according to the function unit list, and configures the functional unit inside the access node according to the access system configuration information.
  • the access node configuration information sent by the access node receiving control device includes: a radio access (RAT) identifier, a functional unit and a functional unit calling sequence, and a functional unit algorithm configuration and parameter configuration.
  • RAT radio access
  • the access node AP can be applied to different radio access standard RATs according to different calling sequences of the functional units.
  • the access node configures the newly inserted module to meet the current RAT. The difference in the system.
  • the access node identifies a functional unit required by the access node, and records a calling sequence of the functional unit and a configuration information of the generated functional unit.
  • the internal proxy of the access node identifies the functional unit required inside the access node, and according to the access system configuration information recorded by the control device in step 411, records the calling sequence of the functional unit, and completes the configuration of the corresponding functional unit.
  • the control device receives a list of all functional units of the new module sent by the access node or a new function list of the new module, and determines whether the functional unit in the access node is current or not.
  • the function unit list in the access system is matched, if not, the query message is sent to the network side device to obtain the corresponding parameter message, and the access system configuration information corresponding to the functional unit in the access node is generated according to the parameter message, so that the access is performed.
  • the node can configure the functional unit according to the access system configuration information to meet different access technologies, so that the functional unit can be reused according to the corresponding multiple access systems, thereby saving network resources and solving resources caused by incomplete use of network resources.
  • an embodiment of the present invention provides a configuration method of an access system, which is shown in FIG.
  • the 'J identifier is the functional unit process selected by the access system in the access node. The specific steps are as follows:
  • a category identifier of a module included in an access node registration module is a category identifier of a module included in an access node registration module.
  • the Access Point (AP) registration function unit list takes the category identifier of the module as an example.
  • the access node has a new module inserted, the internal part of the access node
  • the proxy identification node registers the new module, where the registration of the new module contains the module category identifier of the new module.
  • the internal proxy identification node in the access node is used to register and configure functional units in the access node.
  • the access node sends a registration request to the control device.
  • the registration request includes a category identifier of a module in the access node.
  • the registration request of the new module reported by the access node AP to the control device Controller includes:
  • Module category ID The category identifier of the module is used to distinguish the modules that include different functional units in the access node, so that the control device can obtain the functional unit corresponding to the module according to the category identifier of the module, thereby further identifying the access system and configuring the access node. Operation.
  • the module here contains at least one functional unit, and the calling sequence of the functional units in different Radio Access Technology (RAT) modules is also different.
  • RAT Radio Access Technology
  • the access node sends the module category identifier of the module to the control device, and the control device determines, according to the module category identifier, whether the functional unit included in the module in the access node matches the function unit list in the RAT.
  • the access node replaces the function list with the module category identifier to reduce the signaling load between the access node and the control device.
  • the control device receives a registration request of the access node.
  • the control device receives the request message of the access node, records the function of the access point (AP), triggers the access system capability identification operation, and sends a corresponding message to the access node feedback module registration request.
  • AP access point
  • the control device After the control device receives the registration request of the access node, the control device sends a registration request response message to the access node, where the registration request response message indicates that the control device side has received the registration request sent by the access node, and performs the Identification of functional units in the access node and generation of configuration parameters of the corresponding functional units.
  • the access node receives a registration request response message sent by the control device according to the registration request.
  • the control device identifies, according to the category identifier of the module, an access system of the access node. And generate access system configuration information.
  • control device Controller records the new functional unit of the AP, and matches the functional unit that the AP has with the functional unit list of the current RAT. If it is identified that the functional unit of the access node matches the functional unit required by the current RAT, The recording AP has the support capability for the RAT, and waits for the network side device to send an activation command.
  • control device If the control device cannot identify the access system, send a query message to the network side device.
  • control device If the control device does not recognize whether the functional unit in the AP supports the RAT, the control device sends an inquiry message to the network side device, so as to configure the AP according to the parameter message sent by the network side device.
  • the query message sent by the control device includes: a category identifier of a module included in the access node.
  • the network side device receives the query message sent by the control device, and sends a function call message of the current access system according to the query message, so that the control device identifies the access system supported by the functional unit in the access node according to the function call message.
  • the network side device takes the database as an example.
  • the database classifies the function unit corresponding to the module according to the module type in the RAT function query message, and identifies the identifier of the RAT to which the function unit belongs and the function list corresponding to the RAT full function list and the module. Sent to the Controller.
  • the control device receives a function call message sent by the network side device, and identifies, according to the function call message, an access system that the function unit in the access node can support.
  • the function call message includes an identifier of the access system to which the functional unit belongs and a full function list of the access system.
  • the parameter information of the current access system received by the control device Controller is an identifier of the RAT to which the functional unit in the AP belongs and a full function list of the RAT.
  • the network side device takes a database as an example, where the control device Controller receives the new RAT information sent by the database, and identifies the RAT that the functional unit can support according to the functional unit that the AP has.
  • the network side device sends an activation command to the control device, so that the control device selects an access node that supports the access system according to the activation command, and/or generates a corresponding functional unit. Access system configuration information.
  • the network side device takes a database as an example, wherein the database may also be a traditional network management device (for example, a router, a switch), or a separate device;
  • the database may also be a traditional network management device (for example, a router, a switch), or a separate device;
  • the RAT activation command can be sent by a database or by a network management device. 510.
  • the control device sends the access system configuration information to the access node, so that the access node configures an access system corresponding to the access node according to the access system configuration information.
  • the control device selects an access node supporting the access system and the corresponding functional unit by generating an activation command sent by the network side device, and generates access system configuration information, and sends the access system configuration information to the access node.
  • the network side device takes the database as an example, and the control device Controller can periodically query the network side device to control the device to perform the identification of the capability of the access node to support the RAT.
  • the controller after receiving the activation command of the RAT sent by the database, the controller selects an AP that supports the RAT according to the RAT identifier, and a corresponding functional unit on the AP, and generates access system configuration information that is sent to the AP.
  • the activation command received by the control device is provided by the network side device at step 507 or based on the method provided in step 507.
  • the access node receives the access system configuration information of the module in the corresponding access node generated by the control device according to the function unit list, and configures the function unit inside the access node according to the access system configuration information.
  • the access node configuration information sent by the access node receiving control device includes: a radio access (RAT) identifier, a functional unit and a functional unit calling sequence, and a functional unit algorithm configuration and parameter configuration.
  • RAT radio access
  • the access node AP can be applied to different radio access standard RATs according to different calling sequences of the functional units.
  • the access node configures the newly inserted module to meet the current RAT. The difference in the system.
  • the access node identifies a functional unit required by the access node, and records a calling sequence of the functional unit and a configuration information of the generated functional unit.
  • the internal proxy of the access node identifies the functional unit required inside the access node, and receives the access system configuration information record function sent by the control device according to step 511. The order in which the units are called, and the configuration of the corresponding functional unit is completed.
  • the selection function unit is completed by the control device, and then the AP identifies the functional unit required in the AP according to the configuration parameter of the function unit that configures the AP according to the control device, and records The order in which the functional units are called and the configuration of the functional units is completed.
  • the embodiment corresponding to FIG. 5 is different from the embodiment corresponding to FIG. 4 in that, in the embodiment corresponding to FIG. 5, the registration request message of the AP is the category identifier of the module, and the implementation corresponding to FIG. 4 is replaced by using the category identifier of the module.
  • the list of functional units in the example reduces the signaling load between the access node and the control device, and between the control device and the network side device.
  • the control device receives the module category identifier sent by the access node, and determines whether the functional unit in the access node matches the function unit list in the current radio access system. If not, the query message is sent to the network side device to obtain the corresponding parameter message, and the access system configuration information corresponding to the functional unit in the access node is generated according to the parameter message, so that the access node can configure the function unit according to the access system configuration information. Therefore, different wireless access systems are satisfied, and the access node reduces the signaling load between the nodes by sending the module type identifier, and also solves the problem of resource waste caused by not being able to fully utilize the network resources. Based on the embodiment shown in FIG. 1 , FIG.
  • an embodiment of the present invention provides a configuration method of an access system, which is referred to FIG. 6 .
  • the control unit configures a functional unit process required for the wireless access system according to the list of all functional units of the module or the newly added functional unit list of the new module, wherein the access node selects according to the configuration of the control device.
  • the functional unit, the specific steps are as follows:
  • the Access Point (AP) registration function unit list takes an example of all functional unit lists of the module, wherein when the access node has a new module inserted, the internal proxy identification node of the access node registers the new module. , where the registration of the new module contains a list of all functional units of the new module.
  • the internal proxy identification node in the access node is used to register and configure functional units in the access node. Further, the new module in the access node includes at least one functional unit and a functional unit list of the corresponding functional unit.
  • the access node sends a registration request to the control device.
  • the registration request includes module function parameters in the access node.
  • the registration request of the new module reported by the access node AP to the control device Controller includes:
  • the module here contains at least one functional unit, and the calling sequence of the functional units in different Radio Access Technology (RAT) modules is also different.
  • RAT Radio Access Technology
  • the control device receives a registration request of the access node.
  • the control device receives the request message of the access node, records the function of the access point (AP), triggers the access system capability identification operation, and sends a corresponding message to the access node feedback module registration request.
  • AP access point
  • the control device After the control device receives the registration request of the access node, the control device sends a registration request response message to the access node, where the registration request response message indicates that the control device side has received the registration request sent by the access node, and performs the Identification of functional units in the access node and generation of configuration parameters of the corresponding functional units.
  • the access node receives a registration request response message sent by the control device according to the registration request.
  • the control device identifies, according to the functional unit list, an access system of the access node, and generates access system configuration information.
  • control device Controller records the new functional unit of the AP, and matches the functional unit that the AP has with the functional unit list of the current RAT. If it is identified that the functional unit of the access node matches the functional unit required by the current RAT, The recording AP has the support capability for the RAT, and waits for the network side device to send an activation command.
  • control device If the control device cannot identify the access system, send a query message to the network side device.
  • control device If the control device cannot identify whether the functional unit in the AP supports the RAT, the control device sends a query message to the network side device, so as to be sent according to the parameter sent by the network side device. Number of messages configure the AP.
  • the query message sent by the control device includes: a list of all functional units of the new module, or a list of new functional units added by the new module.
  • the network side device receives the query message sent by the control device, and sends a function call message of the current access system according to the query message, so that the control device identifies the access system supported by the functional unit in the access node according to the function call message.
  • the network side device takes the database as an example.
  • the database searches for the RAT corresponding to the functional unit according to the newly added functional unit list in the RAT function query message, and sends the identifier of the RAT to which the functional unit belongs and the RAT full function list to the controller.
  • the control device receives a function call message sent by the network side device, and identifies, according to the function call message, an access system that the function unit in the access node can support.
  • the function call message includes an identifier of the access system to which the functional unit belongs and a full function list of the access system.
  • the parameter information of the current access system received by the control device Controller is an identifier of the RAT to which the functional unit in the AP belongs and a full function list of the RAT.
  • the network side device takes a database as an example, where the control device Controller receives the new RAT information sent by the database, and identifies the RAT that the functional unit can support according to the functional unit that the AP has.
  • the network side device sends an activation command to the control device, so that the control device selects an access node that supports the access system according to the activation command and/or generates access system configuration information of the corresponding function unit.
  • the network side device takes a database as an example, wherein the database may also be a traditional network management device (for example, a router, a switch), or a separate device; the specific RAT activation command may be sent by a database or by a network management device. 610.
  • the control device sends the access system configuration information to the access node, so that the access node configures an access system corresponding to the access node according to the access system configuration information.
  • the control device selects an access node supporting the access system and the corresponding functional unit by generating an activation command sent by the network side device, and generates access system configuration information, and sends the access system configuration information to the access node.
  • the network side device takes the database as an example, and the control device Controller can also periodically query the network side device, so as to control the device to perform the identification of the capability of the access node to support the RAT.
  • the controller after receiving the activation command of the RAT sent by the database, the controller selects an AP that supports the RAT according to the RAT identifier, and generates access system configuration information that is sent to the AP.
  • the activation command received by the control device is generated by the network side device at step 609 or based on the method provided in step 609.
  • the access node receives the access system configuration information of the module in the corresponding access node generated by the control device according to the function unit list, and configures the functional unit inside the access node according to the access system configuration information.
  • the access node configuration information sent by the access node receiving control device includes: a radio access (RAT) identifier, a functional unit and a functional unit calling sequence, and a functional unit algorithm configuration and parameter configuration.
  • RAT radio access
  • the RAT accessing system configuration information further includes performance indicators of functions of the required functional units in the AP, so that different APs are configured according to different RAT configurations.
  • the incoming configuration information satisfies the specific functional requirements of the access nodes in the communication system.
  • the access node AP can be applied to different radio access standard RATs according to different calling sequences of the functional units, and then the access node configures the newly inserted modules to meet the current RAT by using the access system configuration information generated by the control device. The difference in the system.
  • the access node identifies a functional unit required by the access node, and records a calling sequence of the functional unit and a configuration information of the generated functional unit.
  • the internal proxy of the access node selects the functional unit required in the access node, and according to the access system configuration information recorded by the control device in step 611, records the calling sequence of the functional unit, and completes the configuration of the corresponding functional unit.
  • the internal part of the access node sends configuration information to the functional unit, thereby completing configuration of the corresponding functional unit.
  • the internal proxy of the access node is based on the control device.
  • the sent access system configuration information allocates access system configuration information for the functional unit and configures the functional unit.
  • the internal proxy of the access node registers the functional unit list of the newly inserted module before the access node sends the registration request to the control device, and then the access node sends the functional unit list of the new module to the control device.
  • the internal proxy is exemplified by a built-in module of the access node, and the specific location of the internal proxy and the access node is determined according to actual conditions.
  • the information about the RAT activation on the access node side may be obtained by the control device after receiving the parameter information of the current access system sent by the network side device. Sending, at this time, the RAT identifier needs to be carried when the control device sends configuration information to the access node.
  • the access node actively selects the functional unit required in the access node by receiving the access system configuration information generated by the control device, and records the functional unit. The order of the calls.
  • the present invention may also register the class identifier of the module when the access node registers a new module, and when the control device configures the access node to access the system configuration information, the access node takes the initiative. Select the functional unit you want inside.
  • the control device receives a list of all functional units of the new module sent by the access node, or a new functional unit list added by the new module, and determines the functional unit in the access node.
  • the access node can select the functional units required by the access node according to the access system configuration information to meet different access systems, so that the functional unit can be reused according to the corresponding multiple access systems, thereby saving network resources and solving The problem of wasted resources due to the inability to fully utilize network resources.
  • the embodiment of the present invention provides a configuration method of an access system, based on the embodiment shown in FIG. 1, FIG. 2, FIG. 3, FIG. 4, FIG. 5 and FIG.
  • the process of upgrading the access system for the network side device is as follows:
  • the network side device configures a new access system, and sends the new access to the control device. Access system access system information.
  • the new access system information includes: a version identifier of the access system, a full function list of the access system version, and a protocol stack software corresponding to the function unit.
  • the access system includes: wireless fidelity WIFI, Long Term Evolution (LTE), third-generation mobile communication technology (3rd-generation, 3G) and other wireless access standards.
  • LTE Long Term Evolution
  • 3G third-generation mobile communication technology
  • the control device receives the new access system information sent by the network side device, and identifies and records the access node's support capability for the new access system according to the new access system information.
  • control device Controller identifies that the access unit (Access Point, AP) has a functional unit that matches the full-featured list of the new access system version, if the functional unit in the AP matches the full-featured list of the new access system version. If successful, the AP is recorded to support the new access system version.
  • AP Access Point
  • the AP is not able to support the new access system version. Therefore, when the access node receives ⁇ 'J new module insertion, only the AP capable of supporting the access system is selected for the access system control device.
  • the new access system information sent by the network side device received by the control device is specifically an access system WIFI.
  • the new access system information includes multiple versions of the version identifier, the version full function list, and the corresponding function unit.
  • Protocol stack software to be compatible with multiple version protocols in a communication system consisting of at least one access node, control device and network side device.
  • the network side device sends an activation command of the access system, so that the control device selects an access node corresponding to the access system and/or a corresponding functional unit according to the activation command.
  • the control device receives an activation command of a new access system sent by the network side device.
  • the access system activation command is used to activate the access system information received by the control device, so that the control device can select an access node supporting the access system and a functional unit supporting the access system according to the identifier of the new access system.
  • the control device sends configuration information of the new access system to the access node.
  • the configuration information that the control device sends the access system to the access node includes: a version identifier of the access system, a calling sequence of the functional unit and the functional unit required by the access system, and a function unit algorithm configuration, a parameter configuration, and a function.
  • the protocol stack software corresponding to the unit.
  • the access node receives the configuration information, selects a function unit required to form the access node, records the calling sequence of the functional unit, and generates configuration information of the functional unit.
  • the internal proxy identification node of the access node selects the function unit required inside the access node, and records the calling sequence of the function unit according to the configuration information sent by the control device in step 705, and completes the configuration of the corresponding functional unit.
  • the internal proxy identification node in the access node is used to register and configure functional units in the access node.
  • the configuration method of the access system configures a new access system by the network side device, and the network side identifies the support capability of the access node and the control device for the new access system, so that the control device and the access device are enabled.
  • the node obtains the corresponding configuration according to the requirement, and when the system upgrades the new access, the network side device sends the access system configuration information to the entire communication system, so that the functional unit can be reused according to the corresponding multiple access systems, thereby saving Network resources to solve the problem of wasted resources due to the inability to fully utilize network resources.
  • the access node, the control device and the network side device constitute a communication system capable of implementing the configuration method of the access system, wherein the access node In the communication system formed by the communication system and the control device and the network device, the configuration method of the access system provided by the present invention is still applicable to the access node and the control device, and the control device and the network device. Communication Systems.
  • the embodiment of the present invention provides a control device 8 , which may be any device in the mobile communication network, such as any network controller in the mobile communication network, capable of implementing multiple access control systems.
  • the specific configuration of the control device is not limited, and the configuration method of any of the foregoing access systems provided by the embodiments of the present invention may be implemented.
  • the method includes: receiving unit 81, Receiving a registration request of the access node, the registration request includes a list of functional units in the access node or a category identifier of the module.
  • the list of functional units includes a list of all functional units of the new module in the access node or a list of new functional units added by the new module.
  • the category identifier of the module is used to distinguish access. a module containing different functional units in a node;
  • the configuration unit 82 is configured to identify an access system of the access node according to the function unit list or the class identifier of the module received by the receiving unit, and generate access system configuration information;
  • the sending unit 83 is configured to send the access system configuration information configured by the configuration unit to the access node, so that the access node configures an access system corresponding to the access node according to the access system configuration information.
  • the control device provided by the embodiment of the present invention, queries the network side device, and configures the corresponding functional unit access system configuration information for the access node according to the access system information provided by the network side device, corresponding to the access node.
  • the configuration of the functional unit of the access system enables the functional unit to be applicable to multiple access systems, and the configuration information of the new access system can be saved by the network side device, so that the functional unit can be implemented according to the corresponding multiple access systems. Reuse, which saves network resources and solves the problem of wasted resources due to the inability to fully utilize network resources.
  • the new module in the access node includes at least one functional unit and a functional unit list of the corresponding functional unit or a category identifier of the module.
  • the configuration unit 82 includes:
  • a matching subunit 821 configured to record, according to the functional unit list, a new functional unit in the access node, and match each functional unit included in the access node with a functional unit required by the current access system;
  • the matching subunit 821 is further configured to identify a new functional unit in the access node according to the category identifier of the module, and match the functional unit required by the current access system with each functional unit included in the access node;
  • the matching sub-unit 821 is further configured to: if the functional unit list of the access system matches the functional unit in the access node, the recording access node can support the access system and generate the access system configuration information.
  • the configuration unit 82 includes: The configuration subunit 822 is configured to send a query message to the network side device if the control device cannot identify the access system;
  • the obtaining subunit 823 is configured to receive a function invocation message sent by the network side device according to the query message, where the function invocation message includes an identifier of the access system to which the functional unit belongs and a full function list of the access system.
  • control device selects an Access Point (AP) capable of identifying a Radio Access Technology (RAT) and a functional unit supporting the access system by querying the network side device, and generates an access system configuration information by generating an access system configuration information.
  • AP Access Point
  • RAT Radio Access Technology
  • the AP can record the calling sequence of the functional units and complete the configuration of the corresponding functional units, thereby solving the problem of resource waste caused by not being able to fully utilize the network resources.
  • the identifying subunit 824 is configured to identify, according to the function invocation message, an access system supported by the functional unit in the access node;
  • the communication subunit 825 is configured to receive an activation command sent by the network side device to generate access system configuration information.
  • the access system configuration information includes: an identifier of the access system, a calling sequence of the functional unit required by the new module, and an algorithm configuration and parameter configuration of the functional unit.
  • the query message includes: a list of functional units included in the new module or a list of new functional units added by the new module, or a category representation of the new module.
  • control device 8 further includes:
  • the receiving unit 81 is further configured to receive new access system information sent by the network side device, and identify and record the access node's support capability for the new access system according to the new access system information;
  • the receiving unit 81 is further configured to receive an access system activation command sent by the network side device, where the access system activation command is used to activate the new access system information received by the control device, so that the control device can be based on the new access system.
  • the identification unit selects an access node that supports the new access system and a functional unit that supports the new access system.
  • the sending unit 83 is further configured to send configuration information of the new access system to the access node. Further, the new access system information includes: a version identifier of the access system, a full function list of the access system version, and a protocol stack software corresponding to the function unit.
  • the configuration information of the new access system includes: a version identifier of the access system, a calling sequence of the functional unit and the functional unit required for the access system, and a function unit algorithm configuration, a parameter configuration, and a corresponding function unit. Protocol stack software.
  • the control device receives the new access system version sent by the network side device, selects the access node that supports the new access system version, and generates configuration access according to the new access system version.
  • the configuration information of the node so that the access node can select the functional unit required inside the access node, record the calling sequence of the functional unit, and complete the configuration of the corresponding functional unit, thereby being able to configure the functional unit according to multiple access systems, thereby solving The problem of wasted resources caused by network resources cannot be fully utilized.
  • An embodiment of the present invention provides an access node, which may be a device that can perform multiple access modes in a mobile communication network, such as a base station, in an embodiment of the present invention, an access node.
  • a mobile communication network such as a base station
  • an access node in an embodiment of the present invention, an access node.
  • the specific form of the present invention is not limited, and the configuration method of any of the foregoing access systems provided by the embodiments of the present invention is implemented. Referring to FIG. 11, the method includes: a sending unit 91, configured to send a registration to the control device.
  • the registration request includes a list of functional units in the access node or a category identifier of the module, the list of functional units including a list of all functional units of the new module in the access node or a list of new functional units added by the new module, the category of the module
  • the identifier is used to distinguish modules in the access node that contain different functional units
  • the receiving unit 92 is configured to receive a registration request response message that is sent by the control device according to the registration request.
  • the receiving unit 92 is further configured to receive access system configuration information of the module in the corresponding access node generated by the control device according to the function unit list, and configure the functional unit inside the access node according to the access system configuration information.
  • the control device queries the network side device, and configures the corresponding functional unit access system configuration information for the access node according to the access system information provided by the network side device, and the access node is configured by the access node.
  • the configuration of the functional unit should be accessed, so that the functional unit can be applied to multiple access systems, and the configuration information of the new access system can be saved by the network side device, so that the function can be implemented according to the corresponding multiple access systems.
  • Unit reuse which saves network resources and solves problems because it cannot be fully The problem of wasted resources caused by network resources.
  • the new module in the access node includes at least one functional unit and a functional unit list of the corresponding functional unit or a category identifier of the module.
  • the access node 9 further includes:
  • the registration unit 93 is configured to register a functional unit list included in the new module or identify a category identifier of the new module before the access node sends the registration request to the control device.
  • the receiving unit 92 includes:
  • the identification subunit 922 is configured to identify the functional units required for the access system, and record the calling sequence of the functional units and the configuration information of the generating functional units.
  • the sending unit 91 further includes:
  • the configuration subunit 911 is configured to record the calling sequence of the functional unit and generate the configuration information of the functional unit, and then complete the configuration of the functional unit by sending the configuration information to the functional unit by the internal proxy identifying node of the access node, where the internal proxy identifies the node Register and configure the functional units in the access node.
  • the control device queries the network side device, and configures the corresponding functional unit access system configuration information for the access node according to the access system information provided by the network side device, and the access node is configured by the access node.
  • the configuration of the functional unit should be accessed, so that the functional unit can be applied to multiple access systems, and the configuration information of the new access system can be saved by the network side device, so that the functional unit can be configured according to multiple access systems. Solve the problem of wasted resources due to the inability to fully utilize network resources.
  • the embodiment of the present invention provides a network side device 10, which may be a device in a mobile communication network, such as a database in a mobile communication network, capable of implementing multiple access modes, in the embodiment of the present invention.
  • the specific form of the network side device is not specifically limited, so that any of the above access systems provided by the embodiments of the present invention can be implemented.
  • the configuration method is correct, as shown in Figure 15, including:
  • the communication unit 1001 is configured to receive a query message sent by the control device, and send a function call message of the current access system according to the query message, so that the control device identifies, according to the function call message, an access system supported by the functional unit in the access node;
  • the sending unit 1002 is configured to send an activation command to the control device, so that the control device selects an access node supporting the access system according to the activation command and/or generates access system configuration information of the corresponding functional unit.
  • the network side device provided by the embodiment of the present invention, the control device queries the network side device, and configures the corresponding functional unit access system configuration information for the access node according to the access system information provided by the network side device, The configuration of the functional unit should be accessed, so that the functional unit can be applied to multiple access systems, and the configuration information of the new access system can be saved by the network side device, so that the function can be implemented according to the corresponding multiple access systems.
  • Unit reuse which saves network resources and solves the problem of resource waste caused by not being able to fully utilize network resources.
  • the receiving unit 1001 includes:
  • the query subunit 10011 is configured to search for an access system corresponding to the function unit according to the newly added function unit list carried in the query message, and generate a function call according to the identifier of the access system corresponding to the function unit and the full function list of the access system.
  • a sending subunit 10012 configured to send a function call message generated by the query subunit to the control device;
  • the query subunit 10011 is configured to: according to the module category identifier carried in the query message, the function unit corresponding to the search module, and generate a function call message according to the identifier of the access system corresponding to the function unit and the full function list of the access system;
  • the sending subunit 10012 is configured to send a function call message generated by the query subunit to the control device. Further, the class identifier of the module is used to distinguish modules of the access node that contain different functional units.
  • the network side device 10 further includes:
  • the configuration unit 1003 is configured to configure a new access system, and send the access system information of the new access system to the control device.
  • the sending unit 1002 is configured to send an activation command corresponding to the new access system, so as to control the device.
  • the access node corresponding to the access system and/or the corresponding functional unit are selected according to the activation command.
  • the access standard information includes: a version identifier of the access system, a full function list of the access system version, and a protocol stack software corresponding to the function unit.
  • the network side device receives the new access system version sent by the network side device, selects an access node that supports the new access system version, and generates a configuration connection according to the new access system version.
  • the configuration information of the ingress node so that the access node can select the functional unit required in the access node, record the calling sequence of the functional unit, and complete the configuration of the corresponding functional unit, thereby implementing the functional unit according to the corresponding multiple access systems. Reuse, which saves network resources and solves the problem of wasted resources due to the inability to fully utilize network resources.
  • the present invention provides a communication system 11 , as shown in FIG. 18 , including: a control device 1101 , at least one access node 1102 and a network side device 1103 , where
  • the control device 1101 is any of the control devices shown in FIG. 8 to FIG. 10
  • at least one access node 1102 is any one of the access nodes shown in FIG. 11 to FIG. 14, and the network side device 1103 is as shown in FIG. 15 to FIG. Any network side device.
  • the control device queries the network side device, and configures the corresponding functional unit access system configuration information for the access node according to the access system information provided by the network side device, corresponding to the access node.
  • the configuration of the functional unit of the access system enables the functional unit to be applicable to multiple access systems, and the configuration information of the new access system can be saved by the network side device, so that the functional unit can be implemented according to the corresponding multiple access systems. Reuse, which saves network resources and solves the problem of wasted resources due to the inability to fully utilize network resources.

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Abstract

本发明的实施例公开一种接入制式的配置方法、设备及***,涉及通讯技术领域,能够根据多种接入制式配置功能单元,解决由于不能完全利用网络资源导致的资源浪费的问题。该方法包括:接收接入节点的注册请求,该注册请求包括接入节点中的功能单元列表或模块的类别标识,该功能单元列表包括接入节点中新模块的所有功能单元列表或新模块新增的功能单元列表,该模块的类别标识用于区别接入节点中包含不同功能单元的模块;根据功能单元列表或模块的类别标识识别接入节点的接入制式,并生成接入制式配置信息;发送接入制式配置信息至接入节点,以便接入节点根据接入制式配置信息,配置对应于接入节点的接入制式。本发明的实施例应用于无线接入技术。

Description

一种接入制式的配置方法、 设备及*** 技术领域
本发明涉及通信技术领域, 尤其涉及一种接入制式的配置方法、 设备及***。
背景技术
在现代通信网中随着无线接入技术的发展,现有无线网络接入节 点可具有多种接入制式, 例如, 无线保真 WIFI、 长期演进型 (Long Term Evolution, LTE ) 、 第三代移动通信技术 ( 3rd-generation, 3G ) 等, 基于无线接入技术, 现有技术方案中提供了基站对于多种接入制 式的配置方法, 通过反馈基站的资源能力, 及根据该资源能力配置对 应的接入制式, 并为基站分配支持该接入制式的资源信息从而满足支 持多种接入制式,但是对于多种接入制式对应的接入模块的多次使用 及配置方法没有具体实施方式, 且在现有技术方案提供的场景中, 关 于无线接入技术中版本升级后引入的新模块如何适用于当前接入制 式和配置缺少实践方法。
发明人发现现有技术中存在以下问题:通过提供一种接入节点自 动地按照具体需要加载不同接入制式的方法,在现有技术中在接入节 点对于模块内的功能单元利用不充分,且在现有技术的场景下由于接 入节点支持的无线接入制式(Radio Access Technology , RAT)固定, 不 利于接入节点引入新模块来实现无线接入制式升级进而导致不能重 复利用网络资源, 从而导致网络资源的浪费。
发明内容
本发明的实施例提供一种接入制式的配置方法、 设备及***, 能 够根据多种接入制式配置功能单元,解决由于不能完全利用网络资源 导致的资源浪费的问题。
为达到上述目的, 本发明的实施例釆用如下技术方案:
第一方面, 提供一种接入制式的配置方法, 包括:
接收接入节点的注册请求,所述注册请求包括所述接入节点中的 功能单元列表或模块的类别标识, 所述功能单元列表包括所述接入节 点中新模块的所有功能单元列表或新模块新增的功能单元列表, 所述 模块的类别标识用于区别所述接入节点中包含不同功能单元的模块; 根据所述功能单元列表或所述模块的类别标识识别所述接入节 点的接入制式, 并生成接入制式配置信息;
发送所述接入制式配置信息至所述接入节点, 以便所述接入节点 根据所述接入制式配置信息, 配置对应于所述接入节点的接入制式。
在第一种可能的实现方式中, 结合第一方面具体包括, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
在第二种可能的实现方式中,结合第一方面或第一种可能的实现 方式具体包括, 所述根据所述功能单元列表或所述模块的类别标识识 别所述接入节点的接入制式, 并生成接入制式配置信息, 包括:
根据所述功能单元列表记录所述接入节点中新增的功能单元, 并 将当前接入制式所需的功能单元与接入节点中包含的各个功能单元 进行匹配; 或者, 根据所述模块的类别标识识别所述接入节点中新增的功能单元, 并将当前接入制式所需的功能单元与接入节点中包含的各个功能单 元进行匹配;
若所述接入制式的功能单元列表与所述接入节点中的功能单元 匹配, 则记录所述接入节点能够支持所述接入制式并生成接入制式配 置信息。
在第三种可能的实现方式中,结合第一方面或第一种可能的实现 方式具体包括, 所述根据所述功能单元列表或所述模块的类别标识识 别所述接入节点的接入制式, 并生成接入制式配置信息, 还包括: 若无法识别所述接入制式, 则向网络侧设备发送查询消息; 接收所述网络侧设备根据所述查询消息发送的功能调用消息,所 述功能调用消息包括功能单元所属接入制式的标识和接入制式全功 能列表;
根据所述功能调用消息识别所述接入节点中功能单元能够支持 的接入制式; 接收所述网络侧设备发送的激活命令生成接入制式配置信息。 在第四种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述接入制式配置信息, 包括:
所述接入制式的标识, 所述新模块所需功能单元的调用顺序以及 所述功能单元的算法配置及参数配置。 在第五种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述查询消息, 包括: 所述新模块中所包含的功能单元列表或所述新模块新增的功能 单元列表, 或所述新模块的类别标识。
在第六种可能的实现方式中, 结合第一方面具体包括, 所述方法 还包括:
接收所述网络侧设备发送的新的接入制式信息, 并根据所述新的 接入制式信息识别并记录所述接入节点对于新的接入制式的支持能 力;
接收所述网络侧设备发送的接入制式激活命令, 所述接入制式激 活命令用于激活控制设备接收的所述新的接入制式信息,使得所述控 制设备能够根据所述新的接入制式的标识选取支持所述新的接入制 式的接入节点和支持所述新的接入制式的功能单元;
向所述接入节点发送所述新的接入制式的配置信息。 在第七种可能的实现方式中, 结合第六种可能的实现方式具体包 括, 所述新的接入制式信息包括:
所述接入制式的版本标识, 所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
在第八种可能的实现方式中, 结合第六种可能的实现方式具体包 括, 所述新的接入制式的配置信息包括: 所述接入制式的版本标识, 所述接入制式所需功能单元和所述功 能单元的调用顺序, 以及所述功能单元算法配置及参数配置和所述功 能单元对应的协议栈软件。 第二方面, 提供一种接入制式的配置方法, 包括: 向控制设备发送注册请求, 所述注册请求包括接入节点中的功能 单元列表或模块的类别标识, 所述功能单元列表包括所述接入节点中 新模块的所有功能单元列表或新模块新增的功能单元列表, 所述模块 的类别标识用于区别所述接入节点中包含不同功能单元的模块;
接收所述控制设备根据所述注册请求发送的注册请求响应消息; 接收所述控制设备根据所述功能单元列表生成的对应所述接入 节点中模块的接入制式配置信息, 并根据所述接入制式配置信息对所 述接入节点内部的功能单元进行配置。
在第一种可能的实现方式中, 结合第二方面具体包括, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
在第二种可能的实现方式中, 结合第二方面或第一种可能的实现 方式具体包括, 所述向控制设备发送注册请求之前, 还包括:
注册所述新模块所包含的功能单元列表或识别所述新模块的类 别标识。
在第三种可能的实现方式中, 结合第二方面具体包括, 所述接收 所述控制设备根据所述功能单元列表生成的对应所述接入节点中模 块的接入制式配置信息, 并根据所述接入制式配置信息对所述接入节 点内部的功能单元进行配置, 还包括:
所述接入节点选取所述接入制式所需的功能单元, 并记录所述功 能单元的调用顺序以及生成所述功能单元的配置信息; 或者,
所述接入节点识别所述接入制式所需的功能单元, 并记录所述功 能单元的调用顺序以及生成所述功能单元的配置信息。
在第四种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述记录所述功能单元的调用顺序以及生成所述功能单元的配置 信息之后, 还包括:
通过所述接入节点的内部代理识别节点向所述功能单元发送所 述配置信息完成对所述功能单元的配置, 所述内部代理识别节点用于 注册及配置所述接入节点中的功能单元。
第三方面, 提供一种接入制式的配制方法, 包括: 接收控制设备发送的查询消息, 并根据所述查询消息发送当前接 入制式的功能调用消息, 以便所述控制设备根据所述功能调用消息识 别接入节点中功能单元能够支持的接入制式;
向所述控制设备发送激活命令, 以便所述控制设备根据所述激活 命令选取支持所述接入制式的接入节点和 /或生成对应所述功能单元 的接入制式配置信息。 在第一种可能的实现方式中, 结合第三方面具体包括, 所述接收 控制设备发送的查询消息, 并根据所述查询消息发送当前接入制式的 功能调用消息, 包括:
所述网络侧设备根据所述查询消息中携带的新增的功能单元列 表查找所述功能单元对应的接入制式, 并根据所述功能单元对应的接 入制式的标识和接入制式的全功能列表生成功能调用消息;
将所述功能调用消息发送至所述控制设备; 或者,
所述网络侧设备根据所述查询消息中携带的模块类别标识查找 所述模块对应的功能单元, 并根据所述功能单元对应的接入制式的标 识和接入制式的全功能列表生成功能调用消息;
将所述功能调用消息发送至所述控制设备。
在第二种可能的实现方式中, 结合第一种可能的实现方式具体包 括, 所述模块的类别标识用于区别所述接入节点中包含不同功能单元 的模块。
在第三种可能的实现方式中, 结合第三方面具体包括, 所述方法 还包括:
配置新的接入制式, 并向所述控制设备发送所述新的接入制式的 接入制式信息; 发送对应所述新的接入制式的激活命令, 以便所述控制设备根据 所述激活命令选取所述接入制式对应的接入节点和 /或对应的功能单 元。
在第四种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述新的接入制式的接入制式信息, 包括:
所述接入制式的版本标识, 所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
第四方面, 提供一种控制设备, 包括:
接收单元, 用于接收接入节点的注册请求, 所述注册请求包括所 述接入节点中的功能单元列表或模块的类别标识, 所述功能单元列表 包括所述接入节点中新模块的所有功能单元列表或新模块新增的功 能单元列表, 所述模块的类别标识用于区别所述接入节点中包含不同 功能单元的模块;
配置单元,用于根据所述接收单元接收的所述功能单元列表或所 述模块的类别标识识别所述接入节点的接入制式, 并生成接入制式配 置信息;
发送单元,用于发送所述配置单元配置的所述接入制式配置信息 至所述接入节点, 以便所述接入节点根据所述接入制式配置信息, 配 置对应于所述接入节点的接入制式。
在第一种可能的实现方式中, 结合第四方面具体包括, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
在第二种可能实现的方式中, 结合第四方面或第一种可能的实现 方式具体包括, 所述配置单元, 还包括:
匹配子单元,用于根据所述功能单元列表记录所述接入节点中新 增的功能单元, 并将所述接入节点中包含的各个功能单元与当前接入 制式所需的功能单元进行匹配;
或者, 所述匹配子单元,还用于根据所述模块的类别标识识别所述接入 节点中新增的功能单元, 并将当前接入制式所需的功能单元与接入节 点中包含的各个功能单元进行匹配;
所述匹配子单元,还用于若所述接入制式的功能单元列表与所述 接入节点中的功能单元匹配, 则记录所述接入节点能够支持所述接入 制式并生成接入制式配置信息。
在第三种可能的实现方式中, 结合第四方面或第一种可能的实现 方式具体包括, 所述配置单元还包括: 配置子单元, 用于若所述控制设备无法识别所述接入制式, 则向 网络侧设备发送查询消息; 获取子单元,用于接收所述网络侧设备根据所述查询消息发送的 功能调用消息, 所述功能调用消息包括功能单元所属接入制式的标识 和接入制式全功能列表;
识别子单元,用于根据所述功能调用消息识别所述接入节点中功 能单元能够支持的接入制式;
通信子单元,用于接收所述网络侧设备发送的激活命令生成接入 制式配置信息。
在第四种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述接入制式配置信息, 包括:
所述接入制式的标识, 所述新模块所需功能单元的调用顺序以及 所述功能单元的算法配置及参数配置。
在第五种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述查询消息, 包括:
所述新模块中所包含的功能单元列表或所述新模块新增的功能 单元列表, 或所述新模块的类别标识。 在第六种可能的实现方式中, 结合第四方面具体包括, 所述控制 设备还包括:
所述接收单元,还用于接收所述网络侧设备发送的新的接入制式 信息, 并根据所述新的接入制式信息识别并记录所述接入节点对于新 的所述接入制式的支持能力;
所述接收单元,还用于接收所述网络侧设备发送的接入制式激活 命令, 所述接入制式激活命令用于激活控制设备接收的所述新的接入 制式信息,使得所述控制设备能够根据所述新的接入制式的标识选取 支持所述新的接入制式的接入节,、和支持所述新的接入制式的功能 单元;
所述发送单元,还用于向所述接入节点发送所述新的接入制式的 配置信息。
在第七种可能的实现方式中, 结合第六种可能的实现方式具体包 括, 所述新的接入制式信息包括:
所述接入制式的版本标识, 所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
在第八种可能的实现方式中, 结合第六种可能的实现方式具体包 括, 所述新的接入制式的配置信息包括: 所述接入制式的版本标识, 所述接入制式所需功能单元和所述功 能单元的调用顺序, 以及所述功能单元算法配置及参数配置和所述功 能单元对应的协议栈软件。
第五方面, 提供一种接入节点, 包括:
发送单元, 用于向控制设备发送注册请求, 所述注册请求包括接 入节点中的功能单元列表或模块的类别标识, 所述功能单元列表包括 所述接入节点中新模块的所有功能单元列表或新模块新增的功能单 元列表, 所述模块的类别标识用于区别所述接入节点中包含不同功能 单元的模块;
接收单元,用于接收所述控制设备根据所述注册请求发送的注册 请求响应消息;
所述接收单元,还用于接收所述控制设备根据所述功能单元列表 生成的对应所述接入节点中模块的接入制式配置信息, 并根据所述接 入制式配置信息对所述接入节点内部的功能单元进行配置。 在第一种可能的实现方式中, 结合第五方面具体包括, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
在第二种可能的实现方式中, 结合第五方面或第一种可能的实现 方式具体包括, 所述接入节点还包括:
注册单元, 用于向控制设备发送注册请求之前, 注册所述新模块 所包含的功能单元列表或识别所述新模块的类别标识。
在第三种可能的实现方式中, 结合第五方面具体包括, 所述接收 单元包括:
选取子单元, 用于选取所述接入制式所需的功能单元, 并记录所 述功能单元的调用顺序以及生成所述功能单元的配置信息; 或者,
识别子单元, 用于识别所述接入制式所需的功能单元, 并记录所 述功能单元的调用顺序以及生成所述功能单元的配置信息。
在第四种可能的实现方式中,结合第三种可能的实现方式具体包 括, 所述发送单元, 还包括:
配置子单元,用于记录所述功能单元的调用顺序以及生成所述功 能单元的配置信息之后,通过所述接入节点的内部代理识别节点向所 述功能单元发送所述配置信息完成对所述功能单元的配置, 所述内部 代理识别节点用于注册及配置所述接入节点中的功能单元。
第六方面, 提供一种网络侧设备, 包括:
通信单元, 用于接收控制设备发送的查询消息, 并根据所述查询 消息发送当前接入制式的功能调用消息, 以便所述控制设备根据所述 功能调用消息识别接入节点中功能单元能够支持的接入制式;
发送单元, 用于向所述控制设备发送激活命令, 以便所述控制设 备根据所述激活命令选取支持所述接入制式的接入节点和 /或生成对 应所述功能单元的接入制式配置信息。
在第一种可能的实现方式中, 结合第六方面具体包括, 所述通信 单元包括:
查询子单元,用于根据所述查询消息中携带的新增的功能单元列 表查找所述功能单元对应的接入制式, 并根据所述功能单元对应的接 入制式的标识和接入制式的全功能列表生成功能调用消息;
发送子单元,用于将所述查询子单元生成的所述功能调用消息发 送至所述控制设备; 或者,
查询子单元,用于根据所述查询消息中携带的模块类别标识查找 所述模块对应的功能单元, 并根据所述功能单元对应的接入制式的标 识和接入制式的全功能列表生成功能调用消息; 发送子单元,用于将所述查询子单元生成的所述功能调用消息发 送至所述控制设备。
在第二种可能的实现方式中, 结合第一种可能的实现方式具体包 括, 所述模块的类别标识用于区别所述接入节点中包含不同功能单元 的模块。
在第三种可能的实现方式中, 结合第六方面具体包括, 所述网络 侧设备还包括:
配置单元, 用于配置新的接入制式, 并向所述控制设备发送所述 新的接入制式的接入制式信息; 所述发送单元, 用于发送对应所述新的接入制式的激活命令, 以 便所述控制设备根据所述激活命令选取所述接入制式对应的接入节 点和 /或对应的功能单元。
在第四种可能的实现方式中, 结合第三种可能的实现方式具体包 括, 所述新的接入制式的接入制式信息, 包括:
所述接入制式的版本标识, 所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
第七方面, 提供一种通信***, 包括: 控制设备, 至少一个接入 节点和网络侧设备, 其中, 所述控制设备为第四方面中任一可能的实现方式所述的任一控 制设备, 所述至少一个接入节点为第五方面中任一可能的实现方式所 述的任一接入节点, 所述网络侧设备为第六方面中任一可能的实现方 式所述的任一网络侧设备。
本发明实施例提供的接入制式的配置方法、 设备及***, 控制设 备通过查询网络侧设备, 并根据网络侧设备提供的无线接入制式信息 为接入节点配置对应的功能单元接入制式配置信息,通过接入节点中 对应该无线接入制式的功能单元的配置,使得功能单元能够适用于多 种无线接入制式, 以及能够通过网络侧设备保存新的无线接入制式的 配置信息, 从而能够根据对应的多种接入制式实现功能单元重用, 进 而节约了网络资源,解决由于不能完全利用网络资源导致的资源浪费 的问题。
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 将对实施例或现有技术描述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 为本发明的实施例提供的一种接入制式的配置方法的流程 示意图;
图 2 为本发明的实施例提供的另一种接入制式的配置方法的流 程示意图;
图 3 为本发明的实施例提供的又一种接入制式的配置方法的流 程示意图;
图 4 为本发明的另一实施例提供的一种接入制式的配置方法的 流程示意图;
图 5 为本发明的又一实施例提供的一种接入制式的配置方法的 流程示意图;
图 6 为本发明的再一实施例提供的一种接入制式的配置方法的 流程示意图; 图 7 为本发明的实施例提供的再一种接入制式的配置方法的流 程示意图;
图 8为本发明的实施例提供的一种控制设备的结构示意图; 图 9为本发明的实施例提供的另一种控制设备的结构示意图; 图 10为本发明的实施例提供的又一种控制设备的结构示意图; 图 11为本发明的实施例提供的一种接入节点的结构示意图; 图 12为本发明的实施例提供的另一种接入节点的结构示意图; 图 13为本发明的实施例提供的又一种接入节点的结构示意图; 图 14为本发明的实施例提供的再一种接入节点的结构示意图; 图 15为本发明的实施例提供的一种网络侧设备的结构示意图; 图 16 为本发明的实施例提供的另一种网络侧设备的结构示意 图;
图 17 为本发明的实施例提供的又一种网络侧设备的结构示意 图;
图 18为本发明的实施例提供的一种通信***的结构示意图。
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 通技术人员在没有做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。
在本发明通过的实施例中,执行通信的实体, 可以是接入网与核 心网中的任意实体, 比如 LTE的演进型基站 ( evolved Node Base简 称 eNB )、 信令网关 (Signaling Gateway , 简称 S-GW )、 包连接器 ( Packet Gateway , 简称 PGW ) 等, 又比如 UMTS的 Node B、 无 线网络控制器(Radio Network Controller, 简称 RNC )、 服务支持节 点 ( Serving GPRS SUPPORT NODE, 简称 SGSN )、 网关 GPRS支 持节点 ( Gateway GPRS Support Node , 简称 GGSN ) 等。 其中对于 无线接入制式 (例如: 无线保真 (Wireless Fidelity, WIFI ), 长期 演进 ( Long Term Evolution , LTE ) , 第三代移动通信技术 ( 3rd-generation , 3G ) 等) 接入节点根据多种无线接入制式选择对 应模块, 并根据模块中功能单元的具体功能, 以及其功能单元的调 用顺序进行选取及使用, 本发明基于无线接入技术提供了一种接入 制式的配置方法, 在控制设备侧, 参照图 1所示, 包括以下流程:
101、 控制设备接收接入节点的注册请求。
其中, 该注册请求包括接入节点中功能单元列表, 功能单元列表 包括接入节点中新模块的所有功能单元列表或新模块新增的功能单 元列表或模块的类别标识,该功能单元列表包括接入节点中新模块的 功能单元列表或新模块新增的功能单元列表,该模块的类别标识用于 区别接入节点中包含不同功能单元的模块。 当注册该功能单元时, 功 能单元的参数包括功能单元的标识; 当选取功能单元时, 功能单元的 参数包括: 功能单元支持的算法和处理能力。
这里控制设备接收该接入节点的注册请求后, 记录接入节,、 ( Access Point, AP )的功能,并触发识别无线接入制式( Radio Access Technology , RAT ) 的操作, 进而向 AP反馈模块注册请求响应消息, 以便 AP根据模块注册请求响应消息等待控制设备发送对应模块的接 入制式配置信息。
进一步的,接入节点中新模块包含至少一个功能单元以及对应该 功能单元的功能单元列表或模块的类别标识。
102、 控制设备根据该功能单元列表或模块的类别标识识别接入 节点的接入制式, 并生成接入制式配置信息。
其中,控制设备根据注册请求判断接入节点中模块所包含的功能 单元是否支持当前的接入制式, 具体包括:
ai、 控制设备根据功能单元列表记录接入节点中新增的功能单 元, 并将当前接入制式所需的功能单元与接入节点中包含的各个功能 单元进行匹配。 或者,
a2、 控制设备根据模块的类别标识识别接入节点中新增的功能单 元, 并将当前接入制式所需的功能单元与接入节点中包含的各个功能 单元进行匹配。 b、 若当前接入制式的功能单元列表与该接入节点中的功能单元 匹配, 则记录该接入节点能够支持当前接入制式并生成接入制式配置 信息。
103、 控制设备发送该接入制式配置信息至接入节点, 以便接入 节点根据该接入制式配置信息配置对应于接入节点的接入制式。
其中, 控制设备 Controller根据收到的激活命令向接入节点发送 接入制式配置信息, 这里接入制式配置信息包括: 无线接入(Radios Access Technology , RAT ) 标识、 该无线接入制式 RAT所需功能单 元和功能单元的调用顺序, 以及功能单元算法配置及参数配置。
这里的接入制式包括: 无线保真 WIFI、 长期演进型 (Long Term Evolution , LTE ) 、 第三代移动通信技术( 3rd-generation , 3G ) 类型 的无线接入制式。
在接入节点侧, 参照图 2所示, 包括:
201、 接入节点向控制设备发送注册请求。
其中, 注册请求包括接入节点中的功能单元列表或模块的类别标 识,该功能单元列表包括接入节点中新模块的所有功能单元列表或新 模块新增的功能单元列表,该模块的类别标识用于区别接入节点中包 含不同功能单元的模块。
进一步的,接入节点中新模块包含至少一个功能单元以及对应功 能单元的功能单元列表或模块的类别标识。
这里接入节点向控制设备发送的注册请求包括: 接入节点 ( Access Point, AP ) 中***的新模块的所有功能单元列表, 或新的 模块新增的功能单元列表, 或模块的类别标识。
具体的, 接入节点中的模块中包含至少一个功能单元, 其中通过 功能单元的种类以及功能单元的调用顺序不同使得同种功能单元能 够适用于多种接入制式, 功能单元可以为函数、 硬件或同时具有软硬 件能力的处理单元。
202、 接入节点接收该控制设备根据注册请求发送的注册请求响 应消息。 203、 接入节点接收该控制设备根据功能单元列表生成的对应接 入节点中模块的接入制式配置信息, 并根据该接入制式配置信息对接 入节点内部的功能单元进行配置。
这里接入节点根据接收到的接入制式配置信息,通过内部代理识 别节点内部所需的功能单元,记录功能单元的调用顺序并完成对应功 能单元的配置。
在网络侧设备侧, 参照图 3所示, 包括:
301、 网络侧设备接收控制设备发送的查询消息, 并根据该查询 消息发送当前接入制式的功能调用消息, 以便该控制设备根据功能调 用消息识别接入节点中功能单元能够支持的接入制式。
这里网络侧设备根据查询消息发送当前接入制式的参数消息具 体为:
网络侧设备根据该查询消息中携带的新增的功能单元列表查找 该功能单元对应的接入制式, 并根据功能单元对应的接入制式的标识 和接入制式的全功能列表生成功能调用消息;
将该功能调用消息发送至所述控制设备; 或者,
网络侧设备根据该查询消息中携带的模块类别标识查找模块对 应的功能单元, 并根据功能单元对应的接入制式的标识和接入制式的 全功能列表生成功能调用消息; 将该功能调用消息发送至所述控制设备。
302、 网络侧设备向该控制设备发送激活命令, 以便该控制设备 根据激活命令选取支持该接入制式的接入节点和 /或生成对应功能单 元的接入制式配置信息。
这里网络侧设备向控制设备发送的激活命令为对应无线接入
( Radio Access Technology, RAT ) 制式以便触发控制设备生成对应 RAT的接入节点中功能单元的接入制式配置信息。
本发明实施例提供的接入制式的配置方法,并根据网络侧设备提 供的接入制式信息为接入节点配置对应的功能单元接入制式配置信 息, 通过接入节点中对应该接入制式的功能单元的配置, 使得功能单 元能够适用于多种接入制式, 以及能够通过网络侧设备保存新的接入 制式的配置信息,从而能够根据对应的多种接入制式实现功能单元重 用, 进而节约了网络资源, 解决由于不能完全利用网络资源导致的资 源浪费的问题。
具体的, 以下结合具体的实施例进行说明。
可以在图 1 , 图 2和图 3所示的实施例的基础上,参照图 4所示, 本发明的实施例提供了一种接入制式的配置方法, 参照图 4所示, 为 控制设备根据新模块的所有功能单元列表或新模块新增的功能单元 列表为接入节点中接入制式选择的功能单元过程, 具体步骤如下:
401、 接入节点注册模块所包含的功能单元列表。
这里接入节点 (Access Point, AP ) 注册功能单元列表以模块的 所有功能单元列表为例, 其中, 当接入节点有新模块***后, 接入节 点的内部代理识别节点则对新模块进行注册,其中对新模块的注册包 含新模块的所有功能单元列表。
其中,接入节点中的内部代理识别节点用于注册及配置接入节点 中的功能单元。
进一步的,接入节点中新模块包含至少一个功能单元以及对应功 能单元的功能单元列表。
402、 接入节点向控制设备发送注册请求。
其中, 注册请求包括接入节点中的模块功能参数。
这里接入节点 AP向控制设备 Controller上报的新模块的注册请 求包括:
新模块的所有功能单元列表;或者,新模块新增的功能单元列表。 这里模块中包含至少一个功能单元, 对应不同无线接入制式 ( Radio Access Technology, RAT ) 模块中的功能单元的调用顺序也 不相同。
403、 控制设备接收接入节点的注册请求。
其中,控制设备接收接入节点的请求消息,记录接入节点(Access Point, AP ) 的功能, 触发接入制式能力识别操作, 并向接入节点反 馈模块注册请求相应消息。
这里控制设备在接收接入节点的注册请求后,控制设备会发送注 册请求响应消息至该接入节点,其中注册请求响应消息表示控制设备 侧已经接收到接入节点发送的注册请求, 并进行对接入节点中功能单 元的识别及生成对应功能单元的配置参数。
404、 接入节点接收该控制设备根据注册请求发送的注册请求响 应消息。
405、 控制设备根据该功能单元列表识别接入节点的接入制式, 并生成接入制式配置信息。
这里控制设备 Controller记录 AP新增的功能单元,并将 AP具有 的功能单元与当前 RAT 的功能单元列表进行匹配, 若识别出接入节 点具有的功能单元与当前 RAT 所需的功能单元相匹配, 则记录 AP 对该 RAT具备支持能力, 并等待网络侧设备发送激活命令。
406、 若控制设备无法识别接入制式, 则向网络侧设备发送查询 消息。
这里若控制设备不能识别出 AP中的功能单元是否支持 RAT, 则 控制设备向网络侧设备发送查询消息, 以便根据网络侧设备发送的参 数消息配置 AP。
其中, 控制设备发送的查询消息包括: 新模块的所有功能单元列 表, 或者, 新模块新增的功能单元列表。
407、 网络侧设备接收控制设备发送的查询消息, 并根据该查询 消息发送当前接入制式的功能调用消息, 以便该控制设备根据功能调 用消息识别接入节点中功能单元能够支持的接入制式。
这里网络侧设备以数据库为例, 数据库根据 RAT功能查询消息 中的新增的功能单元列表查找功能单元对应的 RAT,并将该功能单元 所属 RAT的标识和 RAT全功能列表发送给 Controller
408、 控制设备接收网络侧设备发送的功能调用消息, 并根据功 能调用消息识别接入节点中功能单元能够支持的接入制式。
其中, 功能调用消息包括功能单元所属接入制式的标识和接入制 式全功能列表。
这里控制设备 Controller接收到的当前无线接入制式的功能调用 消息为 AP中的功能单元所属 RAT的标识和 RAT全功能列表。
具体的, 网络侧设备以数据库为例, 其中控制设备 Controller接 收到数据库发送的新 RAT信息,并根据 AP所具有的功能单元识别该 功能单元所能支持的 RAT。
其中, 当控制设备在识别 AP的 RAT支持能力时, 这一过程可以 是在控制设备接收 RAT激活命令时进行;也可以在当 AP的新功能单 元注册后触发识别支持 RAT 的能力; 还可以由数据库配置了新的 RAT信息后由网络侧触发判断 AP是否具有支持 RAT的能力。
409、 网络侧设备向该控制设备发送激活命令, 以便该控制设备 根据激活命令选取支持该接入制式的接入节点和 /或生成对应功能单 元的接入制式配置信息。
这里网络侧设备以数据库为例,其中数据库也可以是传统的网络 管理设备 (例如, 路由器, 交换机) , 或一个单独的设备; 具体的 RAT激活命令可以有数据库发送也可以由网络管理设备发送。
410、 控制设备发送该接入制式配置信息至接入节点, 以便接入 节点根据该接入制式配置信息, 配置对应于接入节点的接入制式。
其中,控制设备通过接收网络侧设备发送的激活命令选取支持接 入制式的接入节点以及对应的功能单元并生成接入制式配置信息, 并 将该接入制式配置信息发送至接入节点。
这里网络侧设备以数据库为例, 控制设备 Controller还可以周期 性的查询网络侧设备, 以便控制设备进行接入节点对支持 RAT 的能 力的识别。
具体的, Controller接收到数据库发送的 RAT的激活命令后, 根 据 RAT标识选取支持该 RAT的 AP, 以及 AP上的对应的功能单元, 并生成发送至 AP的接入制式配置信息。
其中,控制设备接收的激活命令由网络侧设备在步骤 409提供或 基于步骤 409提供的方法来生成。 411、 接入节点接收控制设备根据功能单元列表生成的对应接入 节点中模块的接入制式配置信息, 并根据该接入制式配置信息对接入 节点内部的功能单元进行配置。
这里接入节点接收控制设备发送的接入制式配置信息包括: 无线 接入 ( Radio Access Technology, RAT ) 标识、 功能单元和功能单元 调用顺序和功能单元算法配置及参数配置。
其中, 接入节点 AP根据功能单元不同的调用顺序能够适用于不 同的无线接入制式 RAT , 在通过控制设备生成的接入制式配置信息, 接入节点对于新***的模块进行配置以便满足当前 R A T制式的不同。
412、 接入节点识别接入节点所需的功能单元, 并记录功能单元 的调用顺序以及生成功能单元的配置信息。
这里接入节点的内部代理识别接入节点内部所需的功能单元, 并 根据步骤 411 中接收到控制设备发送的接入制式配置信息记录功能 单元的调用顺序, 并完成对应功能单元的配置。
本发明实施例提供的接入制式的配置方法,通过控制设备接收接 入节点发送的新模块的所有功能单元列表或新模块新增的功能列表, 判断该接入节点中的功能单元是否与当前接入制式中的功能单元列 表相匹配,若不能则向网络侧设备发送查询消息以便得到对应的参数 消息, 并根据参数消息生成对应接入节点中功能单元的接入制式配置 信息,使得接入节点能够根据接入制式配置信息配置功能单元从而满 足不同的接入制式,从而能够根据对应的多种接入制式实现功能单元 重用, 进而节约了网络资源, 解决由于不能完全利用网络资源导致的 资源浪费的问题。 可以在图 1 , 图 2和图 3所示的实施例的基础上,参照图 5所示, 本发明的实施例提供了一种接入制式的配置方法, 参照图 5所示, 为 控制设备根据模块类另 'J标识为接入节点中接入制式选择的功能单元 过程, 具体步骤如下:
501、 接入节点注册模块所包含的模块的类别标识。
这里接入节点 ( Access Point, AP ) 注册功能单元列表以模块的 类别标识为例, 其中, 当接入节点有新模块***后, 接入节点的内部 代理识别节点则对新模块进行注册,其中对新模块的注册包含新模块 的模块类别标识。
其中,接入节点中的内部代理识别节点用于注册及配置接入节点 中的功能单元。
502、 接入节点向控制设备发送注册请求。
其中, 注册请求包括接入节点中的模块的类别标识。
这里接入节点 AP向控制设备 Controller上报的新模块的注册请 求包括:
模块类别标识。其中模块的类别标识用于区别接入节点中包含不 同功能单元的模块, 以便控制设备能够根据模块的类别标识获取该模 块对应的功能单元,进而进一步的进行接入制式的识别以及配置接入 节点的操作。
这里模块中包含至少一个功能单元, 对应不同无线接入制式 ( Radio Access Technology, RAT ) 模块中的功能单元的调用顺序也 不相同。其中本发明实施例中接入节点将模块的模块类别标识发送至 控制设备,且控制设备根据模块类别标识判断该接入节点中模块包含 的功能单元是否与 RAT中功能单元列表相匹配。
其中,接入节点用模块类别标识代替功能列表能够减少接入节点 与控制设备间的信令负荷。
503、 控制设备接收接入节点的注册请求。
其中,控制设备接收接入节点的请求消息,记录接入节点(Access Point, AP ) 的功能, 触发接入制式能力识别操作, 并向接入节点反 馈模块注册请求相应消息。
这里控制设备在接收接入节点的注册请求后,控制设备会发送注 册请求响应消息至该接入节点,其中注册请求响应消息表示控制设备 侧已经接收到接入节点发送的注册请求, 并进行对接入节点中功能单 元的识别及生成对应功能单元的配置参数。
504、 接入节点接收该控制设备根据注册请求发送的注册请求响 应消息。
505、控制设备根据该模块的类别标识识别接入节点的接入制式, 并生成接入制式配置信息。
这里控制设备 Controller记录 AP新增的功能单元,并将 AP具有 的功能单元与当前 RAT 的功能单元列表进行匹配, 若识别出接入节 点具有的功能单元与当前 RAT 所需的功能单元相匹配, 则记录 AP 对该 RAT具备支持能力, 并等待网络侧设备发送激活命令。
506、 若控制设备无法识别接入制式, 则向网络侧设备发送查询 消息。
这里若控制设备不能识别出 AP中的功能单元是否支持 RAT, 则 控制设备向网络侧设备发送查询消息, 以便根据网络侧设备发送的参 数消息配置 AP。
其中, 控制设备发送的查询消息包括: 接入节点所包含模块的类 别标识。
507、 网络侧设备接收控制设备发送的查询消息, 并根据该查询 消息发送当前接入制式的功能调用消息, 以便该控制设备根据功能调 用消息识别接入节点中功能单元能够支持的接入制式。
这里网络侧设备以数据库为例, 数据库根据 RAT功能查询消息 中的模块类另 'J标识查找模块对应的功能单元, 并将该功能单元所属 RAT 的标识和 RAT 全功能列表和模块对应的功能列表发送给 Controller。
508、 控制设备接收网络侧设备发送的功能调用消息, 并根据功 能调用消息识别接入节点中功能单元能够支持的接入制式。
其中, 功能调用消息包括功能单元所属接入制式的标识和接入制 式全功能列表。
这里控制设备 Controller 接收到的当前接入制式的参数信息为 AP中的功能单元所属 RAT的标识和 RAT全功能列表。
具体的, 网络侧设备以数据库为例, 其中控制设备 Controller接 收到数据库发送的新 RAT信息,并根据 AP所具有的功能单元识别该 功能单元所能支持的 RAT。
509、 网络侧设备向控制设备发送激活命令, 以便该控制设备根 据激活命令选取支持该接入制式的接入节点和 /或生成对应功能单元 的接入制式配置信息。
这里网络侧设备以数据库为例,其中数据库也可以是传统的网络 管理设备 (例如, 路由器, 交换机) , 或一个单独的设备; 具体的
RAT激活命令可以有数据库发送也可以由网络管理设备发送。 510、 控制设备发送该接入制式配置信息至接入节点, 以便接入 节点根据该接入制式配置信息, 配置对应于接入节点的接入制式。
其中,控制设备通过接收网络侧设备发送的激活命令选取支持接 入制式的接入节点以及对应的功能单元并生成接入制式配置信息, 并 将该接入制式配置信息发送至接入节点。
这里网络侧设备以数据库为例, 控制设备 Controller还可以周期 性的查询网络侧设备, 以便控制设备进行接入节点对支持 RAT 的能 力的识别。
具体的, Controller接收到数据库发送的 RAT的激活命令后, 根 据 RAT标识选取支持该 RAT的 AP, 以及 AP上的对应的功能单元, 并生成发送至 AP的接入制式配置信息。
其中,控制设备接收的激活命令由网络侧设备在步骤 507提供或 基于步骤 507提供的方法来生成。
511、 接入节点接收控制设备根据功能单元列表生成的对应接入 节点中模块的接入制式配置信息, 并根据该接入制式配置信息对接入 节点内部的功能单元进行配置。
这里接入节点接收控制设备发送的接入制式配置信息包括: 无线 接入 ( Radio Access Technology, RAT ) 标识、 功能单元和功能单元 调用顺序和功能单元算法配置及参数配置。
其中, 接入节点 AP根据功能单元不同的调用顺序能够适用于不 同的无线接入制式 RAT , 在通过控制设备生成的接入制式配置信息, 接入节点对于新***的模块进行配置以便满足当前 R A T制式的不同。
512、 接入节点识别接入节点所需的功能单元, 并记录功能单元 的调用顺序以及生成功能单元的配置信息。
这里接入节点的内部代理识别接入节点内部所需的功能单元, 并 根据步骤 511 中接收到控制设备发送的接入制式配置信息记录功能 单元的调用顺序, 并完成对应功能单元的配置。
同样的, 在图 4对应的实施例中, 在选择功能单元上都是由控制 设备完成, 然后由 AP根据控制设备生成配置 AP的功能单元的配置 参数识别 AP内部所需的功能单元, 并记录功能单元的调用顺序并完 成对功能单元的配置。
在图 5对应的实施例与图 4对应的实施例不同的在于,在图 5对 应的实施例中 AP的注册请求消息是模块的类别标识, 通过使用模块 的类别标识替代了图 4对应的实施例中的功能单元列表,进而减小了 接入节点与控制设备, 以及控制设备与网络侧设备间的信令负荷。
本发明实施例提供的接入制式的配置方法,通过控制设备接收接 入节点发送的模块类别标识,判断该接入节点中的功能单元是否与当 前无线接入制式中的功能单元列表相匹配,若不能则向网络侧设备发 送查询消息以便得到对应的参数消息, 并根据参数消息生成对应接入 节点中功能单元的接入制式配置信息,使得接入节点能够根据接入制 式配置信息配置功能单元从而满足不同的无线接入制式,接入节点通 过发送模块类别标识的方式减少了节点间的信令负荷,还解决由于不 能完全利用网络资源导致的资源浪费的问题。 可以在图 1 , 图 2 , 图 3 , 图 4和图 5所示的实施例的基础上, 参照图 6所示, 本发明的实施例提供了一种接入制式的配置方法, 参 照图 6所示, 为控制设备根据模块的所有功能单元列表或新模块新增 的功能单元列表为接入节点配置无线接入制式所需的功能单元过程, 其中接入节点根据控制设备的配置选择所需的功能单元,具体步骤如 下:
601、 接入节点注册模块所包含的功能单元列表。
这里接入节点 (Access Point, AP ) 注册功能单元列表以模块的 所有功能单元列表为例, 其中, 当接入节点有新模块***后, 接入节 点的内部代理识别节点则对新模块进行注册,其中对新模块的注册包 含新模块的所有功能单元列表。
其中,接入节点中的内部代理识别节点用于注册及配置接入节点 中的功能单元。 进一步的,接入节点中新模块包含至少一个功能单元以及对应功 能单元的功能单元列表。
602、 接入节点向控制设备发送注册请求。
其中, 注册请求包括接入节点中的模块功能参数。
这里接入节点 AP向控制设备 Controller上报的新模块的注册请 求包括:
新模块的所有功能单元列表;或者,新模块新增的功能单元列表。 这里模块中包含至少一个功能单元, 对应不同无线接入制式 ( Radio Access Technology, RAT ) 模块中的功能单元的调用顺序也 不相同。
603、 控制设备接收接入节点的注册请求。
其中,控制设备接收接入节点的请求消息,记录接入节点(Access Point, AP ) 的功能, 触发接入制式能力识别操作, 并向接入节点反 馈模块注册请求相应消息。
这里控制设备在接收接入节点的注册请求后,控制设备会发送注 册请求响应消息至该接入节点,其中注册请求响应消息表示控制设备 侧已经接收到接入节点发送的注册请求, 并进行对接入节点中功能单 元的识别及生成对应功能单元的配置参数。
604、 接入节点接收该控制设备根据注册请求发送的注册请求响 应消息。
605、 控制设备根据该功能单元列表识别接入节点的接入制式, 并生成接入制式配置信息。
这里控制设备 Controller记录 AP新增的功能单元,并将 AP具有 的功能单元与当前 RAT 的功能单元列表进行匹配, 若识别出接入节 点具有的功能单元与当前 RAT 所需的功能单元相匹配, 则记录 AP 对该 RAT具备支持能力, 并等待网络侧设备发送激活命令。
606、 若控制设备无法识别接入制式, 则向网络侧设备发送查询 消息。
这里若控制设备不能识别出 AP中的功能单元是否支持 RAT, 则 控制设备向网络侧设备发送查询消息, 以便根据网络侧设备发送的参 数消息配置 AP。
其中, 控制设备发送的查询消息包括: 新模块的所有功能单元列 表, 或者, 新模块新增的功能单元列表。
607、 网络侧设备接收控制设备发送的查询消息, 并根据该查询 消息发送当前接入制式的功能调用消息, 以便该控制设备根据功能调 用消息识别接入节点中功能单元能够支持的接入制式。
这里网络侧设备以数据库为例, 数据库根据 RAT功能查询消息 中的新增的功能单元列表查找功能单元对应的 RAT,并将该功能单元 所属 RAT的标识和 RAT全功能列表发送给 Controller
608、 控制设备接收网络侧设备发送的功能调用消息, 并根据功 能调用消息识别接入节点中功能单元能够支持的接入制式。
其中, 功能调用消息包括功能单元所属接入制式的标识和接入制 式全功能列表。
这里控制设备 Controller 接收到的当前接入制式的参数信息为 AP中的功能单元所属 RAT的标识和 RAT全功能列表。
具体的, 网络侧设备以数据库为例, 其中控制设备 Controller接 收到数据库发送的新 RAT信息,并根据 AP所具有的功能单元识别该 功能单元所能支持的 RAT。
609、 网络侧设备向该控制设备发送激活命令, 以便该控制设备 根据激活命令选取支持该接入制式的接入节点和 /或生成对应功能单 元的接入制式配置信息。
这里网络侧设备以数据库为例,其中数据库也可以是传统的网络 管理设备 (例如, 路由器, 交换机) , 或一个单独的设备; 具体的 RAT激活命令可以有数据库发送也可以由网络管理设备发送。 610、 控制设备发送该接入制式配置信息至接入节点, 以便接入 节点根据该接入制式配置信息, 配置对应于接入节点的接入制式。
其中,控制设备通过接收网络侧设备发送的激活命令选取支持接 入制式的接入节点以及对应的功能单元并生成接入制式配置信息, 并 将接入制式配置信息发送至接入节点。 这里网络侧设备以数据库为例, 控制设备 Controller还可以周期 性的查询网络侧设备, 以便控制设备进行接入节点对支持 RAT 的能 力的识别。
具体的, Controller接收到数据库发送的 RAT的激活命令后, 根 据 RAT标识选取支持该 RAT的 AP,并生成发送至 AP的接入制式配 置信息。
其中,控制设备接收的激活命令由网络侧设备在步骤 609提供或 基于步骤 609提供的方法来生成。
611、 接入节点接收控制设备根据功能单元列表生成的对应接入 节点中模块的接入制式配置信息, 并根据该接入制式配置信息对接入 节点内部的功能单元进行配置。
这里接入节点接收控制设备发送的接入制式配置信息包括: 无线 接入 ( Radio Access Technology, RAT ) 标识、 功能单元和功能单元 调用顺序和功能单元算法配置及参数配置。
此外, 若多个功能单元具有相同功能, 而运算能力、 存储能力不 同,则 RAT接入制式配置信息还包括 AP中所需功能单元的功能的性 能指标,以便根据不同的 RAT配置 AP不同的接入制式配置信息从而 满足通信***中接入节点的具体功能需求。
其中, 接入节点 AP根据功能单元不同的调用顺序能够适用于不 同的无线接入制式 RAT , 进而通过控制设备生成的接入制式配置信 息, 接入节点对于新***的模块进行配置以便满足当前 RAT制式的 不同。
612、 接入节点识别接入节点所需的功能单元, 并记录功能单元 的调用顺序以及生成功能单元的配置信息。
这里接入节点的内部代理选取接入节点内部所需的功能单元, 并 根据步骤 611 中接收到控制设备发送的接入制式配置信息记录功能 单元的调用顺序, 并完成对应功能单元的配置。
613、 接入节点的内部向功能单元发送配置信息, 进而完成对应 功能单元的配置。
这里在步骤 612 的基础上接入节点的内部代理会根据控制设备 发送的接入制式配置信息为功能单元分配接入制式配置信息, 并对功 能单元进行配置。
其中,接入节点的内部代理在接入节点向控制设备发送注册请求 之前会将新***的模块的功能单元列表进行注册, 然后由接入节点将 新的模块的功能单元列表发送至控制设备,这里在本发明实施例中内 部代理以接入节点的一个内置模块进行举例, 内部代理与接入节点的 具***置根据实际情况确定此处不作限定。
本发明实施例中接入节点侧用于 RAT激活的信息, 即控制设备 向接入节点发送的接入制式配置信息,可由控制设备在接收到网络侧 设备发送的当前接入制式的参数信息后发送,此时在控制设备向接入 节点发送配置信息时还需携带 RAT标识。
这里对应图 4和图 5对应的实施例, 图 6对应的实施例中接入节 点通过接收控制设备生成的接入制式配置信息,主动选取接入节点内 部所需的功能单元, 并记录功能单元的调用顺序。
同样的, 对应图 5所述的实施例, 本发明还可以在接入节点注册 新的模块时注册模块的类别标识, 并在控制设备配置接入节点接入制 式配置信息时, 接入节点主动选取内部所需的功能单元。
本发明实施例提供的接入制式的配置方法,通过控制设备接收接 入节点发送的新模块的所有功能单元列表, 或者, 新模块新增的功能 单元列表,判断该接入节点中的功能单元是否与当前接入制式中的功 能单元列表相匹配,若不能则向网络侧设备发送查询消息以便得到对 应的参数消息, 并根据参数消息生成对应接入节点中功能单元的接入 制式配置信息,使得接入节点能够根据接入制式配置信息选取接入节 点所需的功能单元从而满足不同的接入制式,从而能够根据对应的多 种接入制式实现功能单元重用, 进而节约了网络资源, 解决由于不能 完全利用网络资源导致的资源浪费的问题。
可以在图 1 , 图 2 , 图 3 , 图 4 , 图 5和图 6所示的实施例的基础 上,参照图 7所示,本发明的实施例提供了一种接入制式的配置方法, 参照图 7所示, 为网络侧设备升级接入制式的过程, 具体步骤如下:
701、 网络侧设备配置新的接入制式, 并向控制设备发送该新的 接入制式的接入制式信息。
其中, 新的接入制式信息包括: 该接入制式的版本标识, 该接入 制式的版本全功能列表和功能单元对应的协议栈软件。
其中, 这里的接入制式包括: 无线保真 WIFI、 长期演进型(Long Term Evolution, LTE ) 、 第三代移动通信技术 ( 3rd-generation, 3G ) 等无线接入制式。
702、 控制设备接收该网络侧设备发送的新的接入制式信息, 并 根据新的接入制式信息识别并记录接入节点对于新的接入制式的支 持能力。
这里控制设备 Controller识别接入节点( Access Point, AP )具有 的功能单元与新的接入制式版本的全功能列表进行匹配, 如果 AP中 的功能单元与新的接入制式版本的全功能列表匹配成功, 则记录该 AP支持新的接入制式版本。
若 AP中的功能单元与新的接入制式版本的全功能列表匹配不成 功, 则不记录该 AP能够支持新的接入制式版本。 故在接入节点接收 ^ 'J新的模块***时,对于该接入制式控制设备只选取能够支持该接入 制式的 AP。
其中,控制设备接收的网络侧设备发送的新的接入制式信息具体 为, 以接入制式 WIFI为例, 新的接入制式信息包括多个版本的版本 标识, 版本全功能列表以及对应功能单元的协议栈软件, 以便在由至 少一个接入节点,控制设备及网络侧设备组成的通信***中能够兼容 多种版本协议。
703、 网络侧设备发送接入制式的激活命令, 以便该控制设备根 据激活命令选取接入制式对应的接入节点和 /或对应的功能单元。
704、 控制设备接收该网络侧设备发送的新的接入制式的激活命 令。
其中, 接入制式激活命令用于激活控制设备接收的接入制式信 息,使得控制设备能够根据新的接入制式的标识选取支持接入制式的 接入节点和支持接入制式的功能单元。
705、 控制设备向接入节点发送该新的接入制式的配置信息。 其中, 控制设备向接入节点发送接入制式的配置信息包括: 该接 入制式的版本标识, 该接入制式所需功能单元和功能单元的调用顺 序, 以及功能单元算法配置及参数配置和功能单元对应的协议栈软 件。
706、 接入节点接收配置信息并选取组成接入节点所需的功能单 元, 并记录该功能单元的调用顺序以及生成功能单元的配置信息。
这里接入节点的内部代理识别节点选取接入节点内部所需的功 能单元, 并根据步骤 705中接收到控制设备发送的配置信息记录功能 单元的调用顺序, 并完成对应功能单元的配置。
其中,接入节点中的内部代理识别节点用于注册及配置接入节点 中的功能单元。
本发明实施例提供的接入制式的配置方法,通过网络侧设备配置 新的接入制式, 由网络侧识别接入节点与控制设备对新的接入制式的 支持能力, 使得控制设备和接入节点根据所需获取相应的配置, 避免 了***升级新的接入时, 网络侧设备向整个通信***发送接入制式配 置信息, 从而能够根据对应的多种接入制式实现功能单元重用, 进而 节约了网络资源,解决由于不能完全利用网络资源导致的资源浪费的 问题。
本发明中图 4、 图 5、 图 6和图 7对应的实施例中, 接入节点, 控制设备和网络侧设备构成了一个能够实现接入制式的配置方法的 通信***,其中在接入节点与控制设备构成的通信***和控制设备与 网络侧设备构成的通信***中,本发明提供的一种接入制式的配置方 法仍然适用于接入节点与控制设备,控制设备与网络侧设备构成的通 信***。
本发明实施例提供一种控制设备 8 , 该控制设备具体可以为移动 通讯网络中任一种网络控制器等在移动通讯网络中任一能够实现多 种接入制式控制的设备,在本发明的实施例中对控制设备的具体形式 不做具体限制, 以可以实现本发明的实施例所提供的上述任一接入制 式的配置方法为准, 参照图 8所示, 包括: 接收单元 81 , 用于接收接入节点的注册请求, 该注册请求包括 接入节点中的功能单元列表或模块的类别标识,该功能单元列表包括 接入节点中新模块的所有功能单元列表或新模块新增的功能单元列 表, 该模块的类别标识用于区别接入节点中包含不同功能单元的模 块;
配置单元 82 , 用于根据接收单元接收的功能单元列表或模块的 类别标识识别接入节点的接入制式, 并生成接入制式配置信息;
发送单元 83 , 用于发送配置单元配置的接入制式配置信息至接 入节点, 以便该接入节点根据接入制式配置信息, 配置对应于接入节 点的接入制式。
本发明实施例提供的控制设备, 控制设备通过查询网络侧设备, 并根据网络侧设备提供的接入制式信息为接入节点配置对应的功能 单元接入制式配置信息,通过接入节点中对应该接入制式的功能单元 的配置, 使得功能单元能够适用于多种接入制式, 以及能够通过网络 侧设备保存新的接入制式的配置信息,从而能够根据对应的多种接入 制式实现功能单元重用, 进而节约了网络资源, 解决由于不能完全利 用网络资源导致的资源浪费的问题。
进一步的,接入节点中新模块包含至少一个功能单元以及对应功 能单元的功能单元列表或模块的类别标识。
可选的, 参照图 9所示, 配置单元 82包括:
匹配子单元 821 , 用于根据功能单元列表记录接入节点中新增的 功能单元, 并将该接入节点中包含的各个功能单元与当前接入制式所 需的功能单元进行匹配;
或者,
匹配子单元 821 , 还用于根据模块的类别标识识别接入节点中新 增的功能单元, 并将当前接入制式所需的功能单元与接入节点中包含 的各个功能单元进行匹配;
该匹配子单元 821 , 还用于若接入制式的功能单元列表与接入节 点中的功能单元匹配, 则记录接入节点能够支持接入制式并生成接入 制式配置信息。
可选的, 参照图 10所示, 配置单元 82包括: 配置子单元 822 , 用于若控制设备无法识别接入制式, 则向网络 侧设备发送查询消息;
获取子单元 823 , 用于接收网络侧设备根据查询消息发送的功能 调用消息,该功能调用消息包括功能单元所属接入制式的标识和接入 制式全功能列表。
这里控制设备通过查询网络侧设备选取能够识别无线接入制式 ( Radio Access Technology, RAT ) 的接入节点 ( Access Point, AP ) 以及支持该接入制式的功能单元, 并通过生成接入制式配置信息使得 AP 能够记录功能单元的调用顺序并完成对应功能单元的配置, 进而 解决由于不能完全利用网络资源导致的资源浪费的问题。
识别子单元 824 , 用于根据所述功能调用消息识别接入节点中功 能单元能够支持的接入制式;
通信子单元 825 , 用于接收网络侧设备发送的激活命令生成接入 制式配置信息。
可选的, 接入制式配置信息包括: 接入制式的标识, 新模块所需 功能单元的调用顺序以及功能单元的算法配置及参数配置。
可选的, 查询消息包括: 新模块中所包含的功能单元列表或新模 块新增的功能单元列表, 或新模块的类别表示。
可选的, 控制设备 8还包括:
接收单元 81 , 还用于接收网络侧设备发送的新的接入制式信息, 并根据新的接入制式信息识别并记录接入节点对于新的接入制式的 支持能力;
该接收单元 81 , 还用于接收网络侧设备发送的接入制式激活命 令, 该接入制式激活命令用于激活控制设备接收的新的接入制式信 息,使得控制设备能够根据新的接入制式的标识选取支持新的接入制 式的接入节点和支持新的接入制式的功能单元; 发送单元 83 , 还用于向接入节点发送新的接入制式的配置信息。 进一步的, 该新的接入制式信息包括: 接入制式的版本标识, 接 入制式的版本全功能列表和功能单元对应的协议栈软件。 进一步, 可选的, 新的接入制式的配置信息包括: 接入制式的版 本标识, 接入制式所需功能单元和功能单元的调用顺序, 以及功能单 元算法配置及参数配置和功能单元对应的协议栈软件。
本发明实施例提供的控制设备,控制设备通过接收网络侧设备发 送的新的接入制式版本, 选取支持新的接入制式版本的接入节点, 并 根据新的接入制式版本生成配置接入节点的配置信息, 以便接入节点 能够选取接入节点内部所需的功能单元, 并记录功能单元的调用顺序 并完成对应功能单元的配置,从而能够根据多种接入制式配置功能单 元, 解决由于不能完全利用网络资源导致的资源浪费的问题。
本发明实施例提供一种接入节点 9 , 该接入节点具体可以为基站 等在移动通讯网络中任一能够实现多种接入制式运行的设备,在本发 明的实施例中对接入节点的具体形式不做具体限制, 以可以实现本发 明的实施例所提供的上述任一接入制式的配置方法为准, 参照图 11 所示, 包括: 发送单元 91 , 用于向控制设备发送注册请求, 该注册请求包括 接入节点中的功能单元列表或模块的类别标识,该功能单元列表包括 接入节点中新模块的所有功能单元列表或新模块新增的功能单元列 表, 该模块的类别标识用于区别接入节点中包含不同功能单元的模 块;
接收单元 92 , 用于接收控制设备根据注册请求发送的注册请求 响应消息;
该接收单元 92 , 还用于接收该控制设备根据功能单元列表生成 的对应接入节点中模块的接入制式配置信息, 并根据接入制式配置信 息对接入节点内部的功能单元进行配置。
本发明实施例提供的接入节点, 控制设备通过查询网络侧设备, 并根据网络侧设备提供的接入制式信息为接入节点配置对应的功能 单元接入制式配置信息,通过接入节点中对应该接入制式的功能单元 的配置, 使得功能单元能够适用于多种接入制式, 以及能够通过网络 侧设备保存新的接入制式的配置信息,从而能够根据对应的多种接入 制式实现功能单元重用, 进而节约了网络资源, 解决由于不能完全利 用网络资源导致的资源浪费的问题。
进一步的,接入节点中新模块包含至少一个功能单元以及对应功 能单元的功能单元列表或模块的类别标识。
可选的, 参照图 11所示, 接入节点 9还包括:
注册单元 93 , 用于接入节点向控制设备发送注册请求之前, 注 册新模块所包含的功能单元列表或识别新模块的类别标识。
可选的, 参照图 12和图 13所示, 接收单元 92包括:
选取子单元 921 , 用于选取该接入制式所需的功能单元, 并记录 功能单元的调用顺序以及生成功能单元的配置信息;
或者, 识别子单元 922 , 用于识别接入制式所需的功能单元, 并记录功 能单元的调用顺序以及生成功能单元的配置信息。
可选的, 参照图 14所示, 发送单元 91 , 还包括:
配置子单元 911 , 用于记录功能单元的调用顺序以及生成功能单 元的配置信息之后,通过接入节点的内部代理识别节点向功能单元发 送配置信息完成对功能单元的配置,该内部代理识别节点用于注册及 配置接入节点中的功能单元。
本发明实施例提供的接入节点, 控制设备通过查询网络侧设备, 并根据网络侧设备提供的接入制式信息为接入节点配置对应的功能 单元接入制式配置信息,通过接入节点中对应该接入制式的功能单元 的配置, 使得功能单元能够适用于多种接入制式, 以及能够通过网络 侧设备保存新的接入制式的配置信息,从而能够根据多种接入制式配 置功能单元, 解决由于不能完全利用网络资源导致的资源浪费的问 题。
本发明实施例提供一种网络侧设备 10 , 该网络侧设备具体可以 为移动通讯网络中数据库等在移动通讯网络中任一能够实现多种接 入制式运行的设备,在本发明的实施例中对网络侧设备的具体形式不 做具体限制, 以可以实现本发明的实施例所提供的上述任一接入制式 的配置方法为准, 参照图 15所示, 包括:
通信单元 1001 , 用于接收控制设备发送的查询消息, 并根据查 询消息发送当前接入制式的功能调用消息, 以便控制设备根据功能调 用消息识别接入节点中功能单元能够支持的接入制式;
发送单元 1002 , 用于向控制设备发送激活命令, 以便控制设备 根据激活命令选取支持接入制式的接入节点和 /或生成对应功能单元 的接入制式配置信息。 本发明实施例提供的网络侧设备, 控制设备通过查询网络侧设 备, 并根据网络侧设备提供的接入制式信息为接入节点配置对应的功 能单元接入制式配置信息,通过接入节点中对应该接入制式的功能单 元的配置, 使得功能单元能够适用于多种接入制式, 以及能够通过网 络侧设备保存新的接入制式的配置信息,从而能够根据对应的多种接 入制式实现功能单元重用, 进而节约了网络资源, 解决由于不能完全 利用网络资源导致的资源浪费的问题。
可选的, 参照图 16所示, 接收单元 1001 包括:
查询子单元 10011 , 用于根据查询消息中携带的新增的功能单元 列表查找功能单元对应的接入制式, 并根据功能单元对应的接入制式 的标识和接入制式的全功能列表生成功能调用消息;
发送子单元 10012 , 用于将查询子单元生成的功能调用消息发送 至控制设备; 或者,
查询子单元 10011 , 用于根据查询消息中携带的模块类别标识查 找模块对应的功能单元, 并根据功能单元对应的接入制式的标识和接 入制式的全功能列表生成功能调用消息;
发送子单元 10012 , 用于将查询子单元生成的功能调用消息发送 至控制设备。 进一步的,模块的类别标识用于区别接入节点中包含不同功能单 元的模块。
可选的, 参照图 17所示, 网络侧设备 10还包括: 配置单元 1003 , 用于配置新的接入制式, 并向控制设备发送新 的接入制式的接入制式信息; 发送单元 1002 , 用于发送对应该新的接入制式的激活命令, 以 便控制设备根据激活命令选取接入制式对应的接入节点和 /或对应的 功能单元。 进一步的, 接入制式信息, 包括: 接入制式的版本标识, 接入制 式的版本全功能列表和功能单元对应的协议栈软件。
本发明实施例提供的网络侧设备,控制设备通过接收网络侧设备 发送的新的接入制式版本, 选取支持新的接入制式版本的接入节点, 并根据新的接入制式版本生成配置接入节点的配置信息, 以便接入节 点能够选取接入节点内部所需的功能单元, 并记录功能单元的调用顺 序并完成对应功能单元的配置,从而能够根据对应的多种接入制式实 现功能单元重用, 进而节约了网络资源, 解决由于不能完全利用网络 资源导致的资源浪费的问题。
本发明提供一种通信*** 11 , 参照图 18所示, 包括: 控制设备 1101 , 至少一个接入节点 1102和网络侧设备 1103 , 其中,
控制设备 1101 为图 8〜图 10所示的任一控制设备, 至少一个接 入节点 1102为图 11〜图 14所示的任一接入节点, 网络侧设备 1103 为图 15〜图 17所示的任一网络侧设备。
本发明实施例提供的通信***, 控制设备通过查询网络侧设备, 并根据网络侧设备提供的接入制式信息为接入节点配置对应的功能 单元接入制式配置信息,通过接入节点中对应该接入制式的功能单元 的配置, 使得功能单元能够适用于多种接入制式, 以及能够通过网络 侧设备保存新的接入制式的配置信息,从而能够根据对应的多种接入 制式实现功能单元重用, 进而节约了网络资源, 解决由于不能完全利 用网络资源导致的资源浪费的问题。 以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不 局限于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围 内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。 因此, 本发明的保护范围应所述以权利要求的保护范围为准。

Claims

权利要求
1、 一种接入制式的配置方法, 其特征在于, 包括:
接收接入节点的注册请求,所述注册请求包括所述接入节点中的 功能单元列表或模块的类别标识, 所述功能单元列表包括所述接入节 点中新模块的所有功能单元列表或新模块新增的功能单元列表, 所述 模块的类别标识用于区别所述接入节点中包含不同功能单元的模块; 根据所述功能单元列表或所述模块的类别标识识别所述接入节 点的接入制式, 并生成接入制式配置信息;
发送所述接入制式配置信息至所述接入节点, 以便所述接入节点 根据所述接入制式配置信息, 配置对应于所述接入节点的接入制式。
2、 根据权利要求 1 所述的方法, 其特征在于, 所述接入节点中 新模块包含至少一个功能单元以及对应所述功能单元的功能单元列 表或所述模块的类别标识。
3、 根据权利要求 1或 2所述的方法, 其特征在于, 所述根据所 述功能单元列表或所述模块的类别标识识别所述接入节点的接入制 式, 并生成接入制式配置信息, 包括:
根据所述功能单元列表记录所述接入节点中新增的功能单元,并 将当前接入制式所需的功能单元与接入节点中包含的各个功能单元 进行匹配; 或者,
根据所述模块的类别标识识别所述接入节点中新增的功能单元, 并将当前接入制式所需的功能单元与接入节点中包含的各个功能单 元进行匹配;
若所述接入制式的功能单元列表与所述接入节点中的功能单元 匹配, 则记录所述接入节点能够支持所述接入制式并生成接入制式配 置信息。
4、 根据权利要求 1或 2所述的方法, 其特征在于, 所述根据所 述功能单元列表或所述模块的类别标识识别所述接入节点的接入制 式, 并生成接入制式配置信息, 还包括: 若无法识别所述接入制式, 则向网络侧设备发送查询消息; 接收所述网络侧设备根据所述查询消息发送的功能调用消息,所 述功能调用消息包括功能单元所属接入制式的标识和接入制式全功 能列表;
根据所述功能调用消息识别所述接入节点中功能单元能够支持 的接入制式;
接收所述网络侧设备发送的激活命令生成接入制式配置信息。
5、 根据权利要求 4所述的方法, 其特征在于, 所述接入制式配 置信息, 包括:
所述接入制式的标识,所述新模块所需功能单元的调用顺序以及 所述功能单元的算法配置及参数配置。
6、 根据权利要求 4所述的方法, 其特征在于, 所述查询消息, 包括: 所述新模块中所包含的功能单元列表或所述新模块新增的功能 单元列表, 或所述新模块的类别标识。
7、 根据权利要求 1所述的方法, 其特征在于, 所述方法还包括: 接收所述网络侧设备发送的新的接入制式信息,并根据所述新的 接入制式信息识别并记录所述接入节点对于新的接入制式的支持能 力;
接收所述网络侧设备发送的接入制式激活命令,所述接入制式激 活命令用于激活控制设备接收的所述新的接入制式信息,使得所述控 制设备能够根据所述新的接入制式的标识选取支持所述新的接入制 式的接入节点和支持所述新的接入制式的功能单元; 向所述接入节点发送所述新的接入制式的配置信息。
8、 根据权利要求 7所述的方法, 其特征在于, 所述新的接入制 式信息包括:
所述接入制式的版本标识,所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
9、 根据权利要求 7所述的方法, 其特征在于, 所述新的接入制 式的配置信息包括:
所述接入制式的版本标识,所述接入制式所需功能单元和所述功 能单元的调用顺序, 以及所述功能单元算法配置及参数配置和所述功 能单元对应的协议栈软件。
10、 一种接入制式的配置方法, 其特征在于, 包括: 向控制设备发送注册请求,所述注册请求包括接入节点中的功能 单元列表或模块的类别标识, 所述功能单元列表包括所述接入节点中 新模块的所有功能单元列表或新模块新增的功能单元列表, 所述模块 的类别标识用于区别所述接入节点中包含不同功能单元的模块;
接收所述控制设备根据所述注册请求发送的注册请求响应消息; 接收所述控制设备根据所述功能单元列表生成的对应所述接入 节点中模块的接入制式配置信息, 并根据所述接入制式配置信息对所 述接入节点内部的功能单元进行配置。
11、 根据权利要求 10所述的方法, 其特征在于, 所述接入节点 中新模块包含至少一个功能单元以及对应所述功能单元的功能单元 列表或所述模块的类别标识。
12、 根据权利要求 10或 11所述的方法, 其特征在于, 所述向控 制设备发送注册请求之前, 还包括:
注册所述新模块所包含的功能单元列表或识别所述新模块的类 别标识。
13、 根据权利要求 10所述的方法, 其特征在于, 所述接收所述 控制设备根据所述功能单元列表生成的对应所述接入节点中模块的 接入制式配置信息, 并根据所述接入制式配置信息对所述接入节点内 部的功能单元进行配置, 包括:
所述接入节点选取所述接入制式所需的功能单元,并记录所述功 能单元的调用顺序以及生成所述功能单元的配置信息; 或者,
所述接入节点识别所述接入制式所需的功能单元,并记录所述功 能单元的调用顺序以及生成所述功能单元的配置信息。
14、 根据权利要求 13 所述的方法, 其特征在于, 所述记录所述 功能单元的调用顺序以及生成所述功能单元的配置信息之后, 还包 括:
通过所述接入节点的内部代理识别节点向所述功能单元发送所 述配置信息完成对所述功能单元的配置, 所述内部代理识别节点用于 注册及配置所述接入节点中的功能单元。
15、 一种接入制式的配置方法, 其特征在于, 包括: 接收控制设备发送的查询消息,并根据所述查询消息发送当前接 入制式的功能调用消息, 以便所述控制设备根据所述功能调用消息识 别接入节点中功能单元能够支持的接入制式;
向所述控制设备发送激活命令, 以便所述控制设备根据所述激活 命令选取支持所述接入制式的接入节点和 /或生成对应所述功能单元 的接入制式配置信息。
16、 根据权利要求 15所述的方法, 其特征在于, 所述接收控制 设备发送的查询消息, 并根据所述查询消息发送当前接入制式的功能 调用消息, 包括:
所述网络侧设备根据所述查询消息中携带的新增的功能单元列 表查找所述功能单元对应的接入制式, 并根据所述功能单元对应的接 入制式的标识和接入制式的全功能列表生成功能调用消息;
将所述功能调用消息发送至所述控制设备; 或者,
所述网络侧设备根据所述查询消息中携带的模块类别标识查找 所述模块对应的功能单元, 并根据所述功能单元对应的接入制式的标 识和接入制式的全功能列表生成功能调用消息;
将所述功能调用消息发送至所述控制设备。
17、 根据权利要求 16所述的方法, 其特征在于, 所述模块的类 别标识用于区别所述接入节点中包含不同功能单元的模块。
18、 根据权利要求 15所述的方法, 其特征在于, 所述方法还包 括: 配置新的接入制式,并向所述控制设备发送所述新的接入制式的 接入制式信息;
发送对应所述新的接入制式的激活命令, 以便所述控制设备根据 所述激活命令选取所述接入制式对应的接入节点和 /或对应的功能单 元。
19、 根据权利要求 18所述的方法, 其特征在于, 所述新的接入 制式的接入制式信息, 包括:
所述接入制式的版本标识,所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
20、 一种控制设备, 其特征在于, 包括: 接收单元, 用于接收接入节点的注册请求, 所述注册请求包括所 述接入节点中的功能单元列表或模块的类别标识, 所述功能单元列表 包括所述接入节点中新模块的所有功能单元列表或新模块新增的功 能单元列表, 所述模块的类别标识用于区别所述接入节点中包含不同 功能单元的模块;
配置单元,用于根据所述接收单元接收的所述功能单元列表或所 述模块的类别标识识别所述接入节点的接入制式, 并生成接入制式配 置信息;
发送单元,用于发送所述配置单元配置的所述接入制式配置信息 至所述接入节点, 以便所述接入节点根据所述接入制式配置信息, 配 置对应于所述接入节点的接入制式。
21、 根据权利要求 20所述的控制设备, 其特征在于, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
22、 根据权利要求 20或 21所述的控制设备, 其特征在于, 所述 配置单元, 还包括: 匹配子单元,用于根据所述功能单元列表记录所述接入节点中新 增的功能单元, 并将所述接入节点中包含的各个功能单元与当前接入 制式所需的功能单元进行匹配; 或者,
所述匹配子单元,还用于根据所述模块的类别标识识别所述接入 节点中新增的功能单元, 并将当前接入制式所需的功能单元与接入节 点中包含的各个功能单元进行匹配;
所述匹配子单元,还用于若所述接入制式的功能单元列表与所述 接入节点中的功能单元匹配, 则记录所述接入节点能够支持所述接入 制式并生成接入制式配置信息。
23、 根据权利要求 20或 21所述的控制设备, 其特征在于, 所述 配置单元, 还包括:
配置子单元, 用于若无法识别所述接入制式, 则向网络侧设备发 送查询消息;
获取子单元,用于接收所述网络侧设备根据所述查询消息发送的 功能调用消息, 所述功能调用消息包括功能单元所属接入制式的标识 和接入制式全功能列表;
识别子单元,用于根据所述功能调用消息识别所述接入节点中功 能单元能够支持的接入制式;
通信子单元,用于接收所述网络侧设备发送的激活命令生成接入 制式配置信息。
24、 根据权利要求 23 所述的控制设备, 其特征在于, 所述接入 制式配置信息, 包括:
所述接入制式的标识,所述新模块所需功能单元的调用顺序以及 所述功能单元的算法配置及参数配置。
25、 根据权利要求 23 所述的控制设备, 其特征在于, 所述查询 消息, 包括:
所述新模块中所包含的功能单元列表或所述新模块新增的功能 单元列表, 或所述新模块的类别标识。
26、 根据权利要求 20所述的控制设备, 其特征在于, 所述控制 设备还包括:
所述接收单元,还用于接收所述网络侧设备发送的新的接入制式 信息, 并根据所述新的接入制式信息识别并记录所述接入节点对于新 的接入制式的支持能力;
所述接收单元,还用于接收所述网络侧设备发送的接入制式激活 命令, 所述接入制式激活命令用于激活控制设备接收的所述新的接入 制式信息,使得所述控制设备能够根据所述新的接入制式的标识选取 支持所述新的接入制式的接入节,、和支持所述新的接入制式的功能 单元;
所述发送单元,还用于向所述接入节点发送所述新的接入制式的 配置信息。
27、 根据权利要求 26所述的控制设备, 其特征在于, 所述新的 接入制式信息包括:
所述接入制式的版本标识,所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
28、 根据权利要求 26所述的控制设备, 其特征在于, 所述新的 接入制式的配置信息包括:
所述接入制式的版本标识,所述接入制式所需功能单元和所述功 能单元的调用顺序, 以及所述功能单元算法配置及参数配置和所述功 能单元对应的协议栈软件。
29、 一种接入节点, 其特征在于, 包括: 发送单元, 用于向控制设备发送注册请求, 所述注册请求包括接 入节点中的功能单元列表或模块的类别标识, 所述功能单元列表包括 所述接入节点中新模块的所有功能单元列表或新模块新增的功能单 元列表, 所述模块的类别标识用于区别所述接入节点中包含不同功能 单元的模块;
接收单元,用于接收所述控制设备根据所述注册请求发送的注册 请求响应消息;
所述接收单元,还用于接收所述控制设备根据所述功能单元列表 生成的对应所述接入节点中模块的接入制式配置信息, 并根据所述接 入制式配置信息对所述接入节点内部的功能单元进行配置。
30、 根据权利要求 29所述的接入节点, 其特征在于, 所述接入 节点中新模块包含至少一个功能单元以及对应所述功能单元的功能 单元列表或所述模块的类别标识。
31、 根据权利要求 29或 30所述的接入节点, 其特征在于, 所述 接入节点还包括:
注册单元, 用于向控制设备发送注册请求之前, 注册所述新模块 所包含的功能单元列表或识别所述新模块的类别标识。
32、 根据权利要求 29所述的接入节点, 其特征在于, 所述接收 单元包括:
选取子单元, 用于选取所述接入制式所需的功能单元, 并记录所 述功能单元的调用顺序以及生成所述功能单元的配置信息;
或者,
识别子单元, 用于识别所述接入制式所需的功能单元, 并记录所 述功能单元的调用顺序以及生成所述功能单元的配置信息。
33、 根据权利要求 32所述的接入节点, 其特征在于, 所述发送 单元, 还包括: 配置子单元,用于记录所述功能单元的调用顺序以及生成所述功 能单元的配置信息之后,通过所述接入节点的内部代理识别节点向所 述功能单元发送所述配置信息完成对所述功能单元的配置, 所述内部 代理识别节点用于注册及配置所述接入节点中的功能单元。
34、 一种网络侧设备, 其特征在于, 包括: 通信单元, 用于接收控制设备发送的查询消息, 并根据所述查询 消息发送当前接入制式的功能调用消息, 以便所述控制设备根据所述 功能调用消息识别接入节点中功能单元能够支持的接入制式;
发送单元, 用于向所述控制设备发送激活命令, 以便所述控制设 备根据所述激活命令选取支持所述接入制式的接入节点和 /或生成对 应所述功能单元的接入制式配置信息。
35、 根据权利要求 34所述的网络侧设备, 其特征在于, 所述通 信单元包括: 查询子单元,用于根据所述查询消息中携带的新增的功能单元列 表查找所述功能单元对应的接入制式, 并根据所述功能单元对应的接 入制式的标识和接入制式的全功能列表生成功能调用消息;
发送子单元,用于将所述查询子单元生成的所述功能调用消息发 送至所述控制设备; 或者,
查询子单元,用于根据所述查询消息中携带的模块类别标识查找 所述模块对应的功能单元, 并根据所述功能单元对应的接入制式的标 识和接入制式的全功能列表生成功能调用消息;
发送子单元,用于将所述查询子单元生成的所述功能调用消息发 送至所述控制设备。
36、 根据权利要求 35所述的网络侧设备, 其特征在于, 所述模 块的类别标识用于区别所述接入节点中包含不同功能单元的模块。
37、 根据权利要求 34所述的网络侧设备, 其特征在于, 所述网 络侧设备还包括:
配置单元, 用于配置新的接入制式, 并向所述控制设备发送所述 新的接入制式的接入制式信息; 所述发送单元, 用于发送对应所述新的接入制式的激活命令, 以 便所述控制设备根据所述激活命令选取所述接入制式对应的接入节 点和 /或对应的功能单元。
38、 根据权利要求 37所述的网络侧设备, 其特征在于, 所述新 的接入制式的接入制式信息, 包括:
所述接入制式的版本标识,所述接入制式的版本全功能列表和所 述功能单元对应的协议栈软件。
39、 一种通信***, 其特征在于, 包括: 控制设备, 至少一个接 入节点和网络侧设备, 其中,
所述控制设备为权利要求 20~28所述的任一控制设备, 所述至少 一个接入节点为权利要求 29~33所述的任一接入节点,所述网络侧设 备为权利要求 34~38所述的任一网络侧设备。
PCT/CN2014/076216 2013-04-28 2014-04-25 一种接入制式的配置方法、设备及*** WO2014177019A1 (zh)

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