WO2016101670A1 - 开放式多业务蜂窝网络系统及业务实现方法 - Google Patents

开放式多业务蜂窝网络系统及业务实现方法 Download PDF

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Publication number
WO2016101670A1
WO2016101670A1 PCT/CN2015/091029 CN2015091029W WO2016101670A1 WO 2016101670 A1 WO2016101670 A1 WO 2016101670A1 CN 2015091029 W CN2015091029 W CN 2015091029W WO 2016101670 A1 WO2016101670 A1 WO 2016101670A1
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service
subsystem
access
user terminal
service subsystem
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PCT/CN2015/091029
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English (en)
French (fr)
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秦飞
王胡成
徐晖
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电信科学技术研究院
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications

Definitions

  • the present application relates to the field of communications, and in particular, to an open multi-service cellular network system and a service implementation method.
  • Cellular network systems were originally used to provide services such as telephony services and small amounts of data over radio waves in a mobile environment. After years of development, the cellular network system's service scope and service capabilities have gradually increased. In addition to voice and short messages, it can also provide various types of mobile Internet services based on high-speed data access. In recent years, cellular network systems have gradually expanded the scope and scope of applications to the Internet of Things, Internet of Vehicles, and industry networks.
  • the entire network system is usually a private network of the telecommunication operator.
  • the network management and configuration are performed through the operation and maintenance system, and the user is managed by the MME (Mobility Management Entity) and the Home Subscriber Server (HSS).
  • MME Mobility Management Entity
  • HSS Home Subscriber Server
  • PGW Packet Data Network Gateway, packet data gateway
  • the data of the business application can only enter/exit the network through the PGW.
  • Business applications include both business systems deployed by operators and third-party business systems.
  • LTE Long Term Evolution
  • a framework for opening the business capability is added in the LTE system, so that the third-party application and the LTE system can interact through some open API (Application Programming Interface).
  • 5G cellular mobile communication system With the expansion of mobile communication system functions and application areas, the future 5G cellular mobile communication system will broadly support the wireless access requirements of various industries in the human information society, and will no longer be limited to the current use of cellular operators alone.
  • An embodiment of the present application provides an open multi-service cellular network system and a service implementation method for implementing multiple Open sharing of business systems.
  • An open multi-service cellular network system provided by an embodiment of the present application includes: an access network subsystem, a service subsystem connected to the access network subsystem, and the access network subsystem and the service sub- An operational support and a public service subsystem of the system connection, and a rule and supervision subsystem connected to the operational support and the public service subsystem; wherein the service subsystem is N, N>1;
  • the access network subsystem is configured to provide a user terminal with a wireless access service accessing the service subsystem;
  • the service subsystem is configured to provide different types of service services
  • the operational support and public service subsystem is configured to provide resource deployment services for the service subsystem using the access network subsystem's radio access resources, and provide operational support for the open multi-service cellular network system service;
  • the management rule comprises one or more of the following rules: a resource deployment rule used by the resource provisioning service, and a rule used by the operation support service.
  • the operational support and public service subsystem is further configured to provide a public access management service for the user terminal to access the service subsystem.
  • the management rule further includes a rule used by the public access management service.
  • the resource allocation rule used by the resource provisioning service includes: a priority of use by each service subsystem for the radio access resource of the access network subsystem, and/or, each service sub- The proportion of the system's allocation of radio access resources to the access network subsystem.
  • the operation support and public service subsystem is specifically configured to: allocate wireless access resources of access devices in the access network subsystem to the N service subsystems to use in a shared manner; or
  • the radio access resource of the access network subsystem includes N-part access devices that are independent of each other, and the operation support and public service subsystem are specifically configured to: allocate the radio access resources of the N-part access device to The N service subsystems are used, and each service subsystem uses the radio access resources of a part of the access devices of the N part access devices in an exclusive manner; or
  • the operation support and public service subsystem is specifically configured to: allocate wireless access resources of at least a part of the access devices of the access network subsystem to the M service subsystems in a shared manner, M ⁇ N, the radio access resources of the remaining access devices are allocated to (N-M) service subsystems, and each of the (N-M) service subsystems uses the exclusive use The rest of the access devices access the wireless access resources of the device.
  • the operation support and public service subsystem is specifically configured to: divide the radio access resource of the access network subsystem into K resource slices, K ⁇ N, and one or Multiple resource slices are respectively allocated for use by the N service access network subsystems, and resource slices allocated by each service access network subsystem are mutually Not the same.
  • operation support and public service subsystem is specifically configured to: divide resource slices according to the rules and management rules configured by the supervision subsystem.
  • the rule and supervision subsystem is further connected to the service subsystem; the rule and supervision subsystem is further configured to: monitor and manage wireless access of the service subsystem to the access network subsystem The use of resources.
  • the rule and the supervision subsystem are specifically configured to: receive monitoring measurement information reported by the service subsystem for use of the radio access resource, and adjust the resource allocation rule according to the monitoring measurement information, where the resource
  • the provisioning rule is a rule used by the resource provisioning service; and/or, receiving a resource allocation update request reported by the first service subsystem, and adjusting the resource allocation rule according to the usage of the wireless access resource of the other service subsystem;
  • the first service subsystem is any one of the N service subsystems.
  • At least one service subsystem is further configured to: provide the user terminal with an access management service dedicated to the service subsystem.
  • the wireless access service provided by the access network subsystem includes at least: establishing and maintaining a control plane and/or a user plane connection between the user terminal and the service subsystem; establishing and maintaining the user terminal and The operational support is coupled to a control plane and/or a user plane between the public service subsystems.
  • the method further includes: a user terminal, configured to access the service subsystem by using the access network subsystem to implement a corresponding service, so the user terminal supports one or more service subsystems.
  • a user terminal configured to access the service subsystem by using the access network subsystem to implement a corresponding service, so the user terminal supports one or more service subsystems.
  • the access network subsystem receives an access request sent by the user terminal
  • the access network subsystem establishes a wireless connection with the user terminal according to the access request, and sends the access request to the operation support and public service subsystem;
  • the operation support and the public service subsystem authenticate the user terminal according to the access request, and establish a connection with the user terminal after the authentication is passed.
  • the method further includes:
  • the operation support and the public service subsystem acquire a service subsystem contracted by the user terminal;
  • the operation support and the public service subsystem establish a connection between the service subsystems contracted by the user terminal for the user terminal according to the service subsystem contracted by the user terminal.
  • the operating support and the public service subsystem acquire the service subsystem contracted by the user terminal, including:
  • the operation support and the public service subsystem send an access response to the user terminal, where the access response carries information for authenticating the user terminal;
  • the operation support and the public service subsystem receive the indication information of the service subsystem that the user terminal subscribes to according to the user terminal reported by the access response.
  • the service subsystem receives a service establishment request sent by the user terminal
  • the service subsystem accepts the service establishment request, and establishes a radio bearer between the service subsystem and the user terminal;
  • the service subsystem and the user terminal perform user plane data transmission through the radio bearer.
  • the method further includes: the service subsystem receiving a service deletion request sent by the user terminal, where the service deletion request is sent after the user plane data transmission between the user equipment and the service subsystem ends; The service subsystem deletes the radio bearer with the user terminal according to the service deletion request.
  • the operation support and public service subsystem acquires the radio access resource allocation rules of each service subsystem configured in the rule and supervision subsystem;
  • the operation support and the public service subsystem monitor the use of the wireless access resources of each service subsystem according to the radio access resource deployment rules of each service subsystem;
  • the first service subsystem When it is monitored that the radio access resource usage of the first service subsystem reaches the radio access resource usage upper limit of the first service subsystem, the first service subsystem is instructed to refuse to access the new user terminal.
  • the method further includes: when the operation support and the public service subsystem monitor that the radio access resource usage of the first service subsystem is lower than a radio access resource usage upper limit of the first service subsystem or a smaller The threshold of the upper limit indicates that the first service subsystem allows access to a new user terminal.
  • the rule and supervision subsystem receives monitoring measurement information reported by the service subsystem for the use of the wireless access resource
  • the rule and the supervision subsystem adjust the resource allocation rules used by the resource allocation service according to the monitoring measurement information reported by the service subsystem.
  • the method further includes: the rule and the monitoring subsystem receiving the resource allocation update request reported by the first service subsystem, where the first service subsystem detects that the wireless access resource of the first service exceeds the set threshold Resource allocation update request;
  • the rules and the monitoring subsystem adjust the resource allocation rules used by the resource allocation service according to the monitoring measurement information reported by the service subsystem, including:
  • the rule and the supervision subsystem reduce the proportion of the radio access resource allocation of the low-load service subsystem in the other service subsystem according to the radio access resource usage of the other service subsystem, and improve the first service subsystem No Line access resource allocation ratio.
  • the access network subsystem provides a user terminal with a wireless access service accessing the service subsystem, and the operational support and public service subsystem can use the service subsystem for the service subsystem.
  • the radio access resource of the access network subsystem provides a resource allocation service, thereby realizing the sharing of the radio access resources of the access subsystem by the service subsystem, and on the other hand, the operation support and the public service subsystem may be user terminals.
  • Accessing the service subsystem provides a common access management service, thereby realizing the sharing of access management services, thereby implementing an open cellular network system capable of supporting multiple services.
  • FIG. 1 is a schematic structural diagram of a 4G cellular network system in the prior art
  • FIG. 2 is a schematic structural diagram of an open multi-service cellular network system according to an embodiment of the present application
  • FIG. 3 is a schematic flowchart of an access method according to an embodiment of the present disclosure.
  • FIG. 4 is a schematic flowchart of a service establishment method according to an embodiment of the present application.
  • FIG. 5 is a schematic flowchart of a method for deploying a radio access resource according to an embodiment of the present disclosure
  • FIG. 6 is a schematic flowchart of a method for negotiating a resource allocation rule according to an embodiment of the present disclosure.
  • the embodiment of the present application proposes an open multi-service cellular network system, which realizes open sharing and reasonable isolation of basic operations, telecommunication services, and other service systems, and can support multiple service subsystems to jointly operate through one access network subsystem.
  • the open multi-service cellular network system can be used as the architecture of the future 5G communication system.
  • the open multi-service cellular network system can include: an access network subsystem 1, a service subsystem 2 connected to the access network subsystem 1, and the access network subsystem 1 and The operational support and public service subsystem 3 connected to the service subsystem 2, and the rules and supervision subsystem connected to the operational support and public service subsystem 3 4. Further, the rules and supervision subsystem 4 may also be connected to the service subsystem 2.
  • the service subsystem 2 may be multiple, such as N, and N>1.
  • Each service subsystem 2 is a service operation system with a typical type of service characteristics that is responsible for one operator or service provider.
  • the N service service subsystems 2 belong to at least two operators or belong to at least two service providers.
  • the service subsystem A is a telecommunication service system
  • the service subsystem B is an Internet of Things service system
  • the service subsystem C is a railway dispatch management system
  • the service subsystem D is an intelligent traffic management system.
  • the open multi-service cellular network system 100 may also include a user terminal 5.
  • the user terminal 5 is a user equipment in a wireless network, and is used to access the service subsystem through the access network subsystem to implement a corresponding service.
  • User terminal 5 can support one or more service subsystems. For example, as shown, user terminal A supports service subsystem A, user terminal B supports service subsystem B, user terminal C supports service subsystem C, and user terminal D supports service subsystem A and service subsystem B, and user terminal E supports Service Subsystem A, Service Subsystem B, and Service Subsystem C.
  • the access network subsystem 1 is mainly used to provide the user terminal 5 with a wireless access service accessing the service subsystem 2;
  • Service Subsystem 2 is mainly used to provide different types of business services.
  • each business subsystem can provide one type of business service;
  • the operational support and public service subsystem 3 is mainly used to provide resource provisioning services for the service subsystem 2 using the access network subsystem 1 wireless access resources, and to provide operations for the open multi-service cellular network system Support service
  • the rules and supervision subsystem 4 is mainly used to provide management rules for the business operation support and public service subsystem 3.
  • the operational support and public service subsystem 3 is further configured to provide the user terminal 5 with access to the service subsystem 2 to provide a common access management service.
  • the management rule may include one or more of the following rules: a resource provisioning rule used by the resource provisioning service, and a rule used by the operation supporting service.
  • the resource provisioning rule used by the resource provisioning service may include: a priority of use by each service subsystem for the radio access resource of the access network subsystem, and/or, each service sub- The proportion of the system's allocation of radio access resources to the access network subsystem.
  • the management rules may also include rules used by a public access management service.
  • the radio access resource usage rules of each service subsystem are configured in advance in the rule supervision subsystem. Taking the three service subsystems of service subsystem A, service subsystem B and service subsystem C in the figure as examples, the three service subsystems have the same priority for the use of the radio access resources of the access network subsystem.
  • Each access device in the access network subsystem reserves one-third of the radio access resources and corresponding transmission resources for the three service subsystems. In addition to evenly allocating radio access resources for these three service subsystems, it is also possible to follow a certain ratio, Allocate radio access resources to these three service subsystems evenly.
  • an operational subsystem can be configured with an absolute priority priority for the use of radio access resources.
  • the emergency command service subsystem can preferentially use the radio access resources in the access network subsystem.
  • the rule and supervision subsystem 4 is further configured to: monitor and manage the service subsystem 2 The use of the radio access resources of the incoming subsystem 1.
  • Multiple access devices may be included in the access network subsystem 1.
  • the structure of a typical access network subsystem 1 is similar to the access network architecture of a 4G network.
  • the access device may also be a centralized access device or a distributed access device.
  • a distributed base station is configured to include a plurality of radio remote units and a baseband processing unit connected to the plurality of radio remote units.
  • the access device in the access network subsystem 1 can be connected to the devices in the service subsystem 2 through the backhaul link to implement the connection with the service subsystem at the physical layer.
  • the service subsystem 2 can use the radio access resources provided by the access network subsystem 1 to enable the user terminal 5 to access the open multi-service cellular network system 100.
  • the service subsystem 2 can use the wireless access resources provided by the access network subsystem 1 in a shared manner, which is controlled and managed by the operational support and public service subsystem 3.
  • the operational support and public service subsystem 3 may allocate access devices in the access network subsystem 1 to the N service subsystems 2 for use in a shared manner. .
  • all the service subsystems can use the same radio access resource of the access network subsystem 1 in a shared manner, for example, the radio access resources of one access device in the access network subsystem 1 can be allocated. Used by each service access subsystem.
  • the radio access resources of the access network subsystem 1 include radio access resources of N-part access devices that are independent of each other.
  • the operation support and public service subsystem 3 may allocate the radio access resources of the N-part access device to the N service subsystems, and each service subsystem uses the exclusive use mode.
  • the above sharing method can be used in combination with the exclusive mode.
  • the operation support and public service subsystem 3 may allocate wireless access resources of at least a part of the access devices of the access network subsystem 1 to the M service subsystems in a shared manner. , M ⁇ N, allocating the radio access resources of the remaining access devices to (N-M) service subsystems, each of the (N-M) service subsystems being exclusively used The wireless access resources of a part of the access devices of the rest of the access devices are used.
  • the sharing of the foregoing wireless access resources can be specifically implemented as follows:
  • the operation support and public service subsystem 3 divides the radio access resources of the access network subsystem 1 into K The resource slice, K ⁇ N, allocates one or more resource slices to the N service access network subsystems respectively, and the resource slices allocated by each service access network subsystem are different from each other.
  • the resource slice may be a slice of a time domain resource, so that multiple service subsystems share the wireless access resources in a time sharing manner.
  • the resource slice may also be a slice of a frequency resource, so that multiple service subsystems are frequency-shared to share the wireless access resource.
  • the resource slice may also be a slice of a time-frequency resource. The embodiment of the present application does not limit how to divide resource slices, as long as the wireless access resources used by different service subsystems at different times are different.
  • the operational support and public service subsystem 3 may divide resource slices according to the resource allocation rules configured by the regulatory subsystem 4 according to the rules.
  • the rule may specify the manner in which the resource slices are divided and the size of the resource slice. In this way, the resource slice division rules can be adjusted flexibly and conveniently.
  • the rule and supervision subsystem 4 can be connected to the service subsystem 2 to monitor and manage the use of the wireless access resources of the access network subsystem for the service subsystem. To further adjust the resource allocation rules.
  • the rule and supervision subsystem 4 may receive monitoring measurement information reported by the service subsystem 2 for the use of the radio access resource, and adjust the resource allocation rule according to the monitoring measurement information; and/or The rule and supervision subsystem 4 receives the resource allocation update request reported by the first service subsystem, and adjusts the resource allocation rule according to the usage of the wireless access resources of the other service subsystems or the N service subsystems,
  • the first service subsystem is any one of the N service subsystems.
  • the monitoring measurement information reported by each service subsystem may be a load condition of the wireless access resource or a network busyness degree.
  • the rule and the supervision subsystem 4 can adjust the resource allocation rule to the service sub-subscribing according to the monitoring measurement information reported by each service subsystem, if the load of the radio access resource of a service subsystem is found to be large. The system allocates more wireless access resources.
  • a service subsystem may send a resource allocation update request to the rule and supervision subsystem 4 to request more radio access resources.
  • the rule and the monitoring subsystem receive the resource allocation update request, according to the wireless access resource usage of each service subsystem, if the wireless access resource usage of another certain service access subsystem is found Less, such as below a set threshold, the resource provisioning rules can be adjusted to allocate more radio access resources to the service subsystem that initiated the request.
  • the rule and supervision subsystem 4 may send monitoring measurement configuration information for the wireless access resource usage to the service subsystem 2, so that the service subsystem is configured for wireless access according to the configuration information. Monitor the measurement of resource usage.
  • the monitoring measurement configuration information may include a parameter type that needs to be monitored and reported, and The time of reporting or the way of reporting.
  • the adjustment function of the negotiation-based resource allocation rule is implemented.
  • the adjustment function of the resource allocation rule based on the negotiation can dynamically adjust the resource configuration rules according to the use of the radio access resources of each service subsystem to improve the efficiency of using the radio access resources.
  • the open multi-service cellular network system 100 allows different operational policies of different service subsystems to differ, and allows the service subsystem to have its own dedicated access management services, such as service access, authentication, mobility management, etc., as needed. .
  • a service subsystem or a plurality of service subsystems are allowed to provide user terminals with service access, authentication, mobility management, and user hosting services dedicated to the service subsystem. One or more of them.
  • the service subsystem A For example, if the service subsystem A needs an authentication process or an authentication algorithm different from the public access management service provided by the operation support and the public service subsystem, the service subsystem A configures its own dedicated authentication process or The authentication algorithm authenticates the user's access.
  • the wireless access service provided by the access network subsystem includes at least: establishing and maintaining a control plane and/or a user plane connection between the user terminal and the service subsystem. And establishing and maintaining a control plane and/or user plane connection between the user terminal and the operational support and public service subsystem.
  • the control plane connection between the user terminal and the service subsystem is mainly used to transmit control signaling between the terminal and the service subsystem, for example, access, interaction, or mobility management of the interactive user terminal through the control plane.
  • Related signaling; user plane connection between the user terminal and the service subsystem is mainly used to transmit service data;
  • the control plane connection between the user terminal and the operation support and the public service subsystem is mainly used to transmit the terminal and the service. Control signaling between subsystems, such as signaling related to access, authentication, or mobility management of an interactive user terminal through the control plane.
  • the public access management service provided by the operation support and the public service subsystem may include at least one or more of access, authentication, mobility management, and user hosting. Services, in addition, can also include other management services.
  • the open multi-service cellular network system 100 includes the following types of interfaces:
  • a first interface (shown as a NU interface): an interface between the user terminal 5 and the access network subsystem 1, the interface being a wireless communication interface;
  • the second interface is an interface between the access network subsystem and the service subsystem, and the second interface includes a control plane interface (shown as an SN interface in the figure) and/or a user plane interface (shown as an SU interface in the figure);
  • a control plane interface shown as an SN interface in the figure
  • a user plane interface shown as an SU interface in the figure
  • the third interface the interface between the operational support and the public service subsystem and the access network subsystem.
  • the third interface includes a first sub-interface (shown as a C1 interface), a second sub-interface (shown as a C2 interface), and a third sub-interface (shown as a C3 interface) ;
  • the fourth interface (shown as CS interface in the figure): an interface between the operational support and the public service subsystem and the service subsystem;
  • the fifth interface (shown as CR interface in the figure): the interface between the operational support and the public service subsystem and the rules and supervision subsystem.
  • the sixth interface (shown as SR interface) is the interface between the service subsystem and the rules and supervision subsystem.
  • the NU interface is mainly used to implement a wireless link connection between the user terminal and the open multi-service cellular network system, and the wireless link connection carries a connection between the user terminal and the operation support and the public service subsystem, and the user a connection between the terminal and the service subsystem;
  • the SN interface is mainly used to implement control plane signaling interaction between the user terminal and the service subsystem;
  • the SU interface is mainly used to implement user plane data transmission between the user terminal and the service subsystem.
  • the C1 interface is mainly used to implement deployment and management of radio access resources of the access network subsystem
  • the C2 interface is mainly used to implement public access management for the user terminal access service subsystem, for example, functions such as access, authentication, and mobility management can be implemented;
  • the C3 interface is an operation and maintenance interface, and is mainly used to implement operation, maintenance, and management of the access network subsystem.
  • the CS interface is mainly used to implement the deployment management of the radio access resource, and the public access management; for example, necessary signaling interaction for resource allocation, user hosting, mobility guarantee, and service quality assurance;
  • the CR interface is mainly used to implement the interaction of management rules; for example, feedback for extracting and providing results for providing operational support and public services;
  • the SR interface is mainly used to implement the negotiation and adjustment of the resource allocation rules in the management rules, and the reporting of the monitoring measurement information according to the regulatory requirements.
  • the access network subsystem provides a user terminal with a wireless access service accessing the service subsystem
  • the operation support and public service subsystem may be the service sub-
  • the system provides the resource allocation service by using the radio access resource of the access network subsystem, thereby realizing the sharing of the radio access resources of the access subsystem by the service subsystem
  • the operation support and the public service subsystem The public access management service can be provided for the user terminal to access the service subsystem, thereby realizing the sharing of the access management service, thereby implementing an open cellular network system capable of supporting multiple services.
  • FIG. 3 is a schematic flowchart diagram of an access method provided by an embodiment of the present application.
  • the access process can be entered.
  • the access process may include:
  • Step 301 The access network subsystem receives an access request sent by the user terminal.
  • the user terminal sends the access request through the NU interface.
  • Step 302 The access network subsystem establishes a wireless connection with the user terminal according to the access request, and sends the access request to the operation support and public service subsystem.
  • the access network subsystem allocates radio resources to the user terminal, establishes a radio link with the user terminal, and sends the access request to the operation support and the public service subsystem through the C2 interface.
  • Step 303 The operation support and the public service subsystem authenticate the user terminal according to the access request, and after the authentication is passed, establish a connection with the user terminal, so that the user terminal resides in the In the network.
  • the operation support and the public service subsystem authenticate the user terminal, and after the authentication is passed, based on the wireless link between the user terminal and the access network subsystem, and the user
  • the terminal establishes a connection, that is, the connection between the operational support and the public service subsystem and the user terminal is carried over the wireless link between the access network subsystem and the user terminal.
  • the connection between the operational support and the public service subsystem and the user terminal includes a control plane connection and/or a user plane connection.
  • step 303 the following steps 304 and 305 may be further included:
  • Step 304 The operation support and the public service subsystem acquire a service subsystem that is contracted by the user terminal.
  • the operation support and the public service subsystem may be configured with a device for storing user subscription information, and the operation support and public service subsystem may obtain the service subsystem signed by the user terminal from the device.
  • the operation support and the public service subsystem send an access response to the user terminal, where the access response carries information for authenticating the user terminal; the operation support Receiving, by the public service subsystem, the indication information of the service subsystem that is subscribed by the user terminal according to the access response reported by the user terminal.
  • Step 305 The operation support and the public service subsystem interact with the service subsystem contracted by the user terminal according to the service subsystem signed by the user terminal, so that the service subsystem signed by the user terminal and the user terminal Establish a connection between them.
  • the operation support and the public service subsystem can interact with the service subsystem contracted by the user terminal through the CS interface, so that the service subsystem establishes a connection with the user terminal.
  • the connection may include a control plane connection and/or a user plane connection.
  • FIG. 4 is a schematic flowchart diagram of a service establishment method provided by an embodiment of the present application.
  • the service establishment process may include:
  • Step 401 The service subsystem receives a service establishment request sent by the user terminal.
  • the service establishment request may be The wireless link is sent to the access network subsystem and sent by the access network subsystem to the service subsystem.
  • Step 402 The service subsystem accepts the service establishment request, and establishes a radio bearer between the service subsystem and the user terminal.
  • the service establishment request may be directly accepted; if the service subsystem has a dedicated access management service function, according to the dedicated access management service function
  • the service establishment request performs access control and authentication processing.
  • a radio bearer is established between the service subsystem and the user terminal based on a wireless link between the user terminal and an access network subsystem.
  • Step 403 The service subsystem and the user terminal perform user plane data transmission by using the radio bearer.
  • the user terminal may initiate a connection release process, and the process may include the following steps:
  • Step 404 The service subsystem receives a service deletion request sent by the user terminal, where the service deletion request is sent after the user plane data transmission between the user equipment and the service subsystem ends.
  • Step 405 The service subsystem deletes the radio bearer with the user terminal according to the service deletion request, and further releases related resources.
  • FIG. 5 is a schematic flowchart of a radio access resource deployment method according to an embodiment of the present application.
  • the process can include the following steps:
  • Step 501 The operation support and the public service subsystem acquire the radio access resource deployment rules of each service subsystem configured in the rule and the supervision subsystem.
  • the radio access resource deployment rules of each service subsystem may be pre-configured in a rule supervision subsystem.
  • the resource provisioning rules may define usage priorities and/or allocation ratios of wireless access resources by each service subsystem.
  • Step 502 The operation support and the public service subsystem monitor the use of the radio access resources of each service subsystem according to the radio access resource deployment rules of each service subsystem.
  • the operation support and the public service subsystem can monitor the use of the radio access resources of each service subsystem through the C1 interface, and the monitoring content may include whether the radio access resource usage of the service subsystem reaches the upper limit, and/or Whether there is a user terminal requesting access to a high priority service subsystem.
  • Step 503 When it is monitored that the radio access resource usage of the first service subsystem reaches the radio access resource usage upper limit of the first service subsystem, the first service subsystem is instructed to refuse to access the new user terminal.
  • the operation support and the public service subsystem monitors that the radio access resource usage of the first service subsystem is lower than a radio access resource usage upper limit of the first service subsystem or a threshold smaller than the upper limit The value indicates that the first service subsystem allows access to a new user terminal.
  • the operational support and the public service subsystem monitors that there is a user terminal requesting access to a high priority industry The subsystem, but the current radio access resource usage of the high priority service subsystem has reached the upper limit of the service subsystem, and the operation support and the public service subsystem allocate new radio access resources to the service subsystem. To access the user terminal.
  • step 501 can be performed only once during a period of time, while step 502 can continue to execute during that period of time, while step 503 is performed in accordance with the monitoring situation.
  • FIG. 6 is a schematic flowchart diagram of a method for negotiating a resource allocation rule according to an embodiment of the present application.
  • the process can include the following steps:
  • Step 601 The rule and supervision subsystem receives monitoring measurement information reported by the service subsystem for the use of the radio access resource.
  • the rule and the supervision subsystem can receive the monitoring and measurement information reported by the service subsystem for the use of the radio access resource through the SR interface.
  • the all or part of the service subsystem may report the monitoring and measurement information.
  • the rule and supervision subsystem can configure all or part of the service subsystem to report the monitoring and measurement information, and further configure the content of the monitoring measurement and the manner of reporting, such as event-triggered reporting or periodic reporting.
  • Step 602 The rule and the supervision subsystem adjust the resource allocation rules used by the resource deployment service according to the monitoring measurement information reported by the service subsystem.
  • the resource allocation rule used by the resource allocation service may be adjusted to adjust the resource slice allocation ratio of the service subsystem.
  • the rule and supervision subsystem finds that the radio access resource demand of a service subsystem is large according to the monitoring measurement information reported by the service subsystem, the proportion of the radio access resource allocation may be appropriately increased for the service subsystem;
  • the demand for radio access resources of a service subsystem is small, and the proportion of allocation of radio access resources can be appropriately reduced for the service subsystem.
  • the first service subsystem monitors that its own radio access resource exceeds a set threshold
  • the first service subsystem detects that its radio access resource exceeds a set threshold
  • it sends a resource allocation update request to Rule and regulation subsystem.
  • the rule and the supervision subsystem reduce the low load service in the other service subsystem according to the wireless access resource usage of other service subsystems.
  • the proportion of the radio access resource allocation of the subsystem increases the proportion of the radio access resource allocation for the first service subsystem.
  • the rules and supervision subsystem can adjust the proportion of resource slices available to each business subsystem.
  • the service subsystem may propose a request to increase the proportion of resources, and the rule subsystem reduces the low-load service subsystem according to the usage of the wireless access resources of several other service subsystems.
  • the allocation ratio of resource slices increases the resource slice ratio of the high-load service subsystem.
  • the rule and supervision subsystem can configure the right to use the radio access resources of a certain service subsystem to be absolutely prioritized. For example, when a disaster occurs, the emergency command business system can be configured. Priority is given to using radio access resources in the access network.
  • the embodiment of the present application is based on the access part of the future 5G network as a public basic network, and the service and the future connected information network society need to be realized through an open multi-service system sharing network architecture and method.
  • Multiple industries or multiple business systems share a common physical wireless access infrastructure network according to certain rules, improving network operation efficiency and service support capability, and avoiding network duplication and resource waste.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

Abstract

本申请公开了一种开放式多业务蜂窝网络系统及业务实现方法,该系统可包括:接入网子系统、业务子系统、运营支撑与公共服务子系统以及规则与监管子系统。一方面,接入网子系统为用户终端提供接入所述业务子系统的无线接入服务,运营支撑与公共服务子系统可为所述业务子系统使用所述接入网子系统的无线接入资源提供资源调配服务,从而实现了业务子系统对接入网子系统的无线接入资源的共享,进而实现了能够支持多种业务的开放式蜂窝网络系统。

Description

开放式多业务蜂窝网络系统及业务实现方法
本申请要求在2014年12月23日提交中国专利局、申请号为201410816128.5、发明名称为“开放式多业务蜂窝网络系统及业务实现方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信领域,尤其涉及一种开放式多业务蜂窝网络系统及业务实现方法。
背景技术
蜂窝网络系统最初用于提供人们在移动环境下通过无线电波实现电话业务和少量数据等业务。经过多年的发展,蜂窝网络系统业务范围和业务能力逐渐增强,除了话音、短消息外,还能够提供基于高速数据接入的各类移动互联网业务。近年,蜂窝网络系统逐步扩展应用范围和领域到物联网、车联网、行业网等领域。
以现有的4G(第四代移动通信技术)蜂窝网络系统为例,其网络架构如图1所示。整个网络系统通常为电信运营商的私有网络,通过运维系统进行网络管理和配置,通过MME(Mobility Management Entity,移动管理实体)、HSS(Home Subscriber Server,用户归属服务器)等实现对用户的管理和控制,通过PGW(Packet Data Network Gateway,分组数据网关)实现与外部网络的互联网互通。业务应用的数据只能通过PGW进/出网络。业务应用既包括运营商部署的业务系统也包括第三方的业务系统。
机器类通信业务的发展对LTE(Long Term Evolution,长期演进)系统提出了能力开放的需求,因此在LTE系统中出现了一些支持能力开放的新功能。例如,在LTE系统中增加了业务能力开放的框架,使得第三方应用和LTE系统可以通过一些开放的API(Application Programming Interface,应用程序编程接口)进行交互。
随着移动通信系统功能和应用领域的扩展,未来的5G蜂窝移动通信系统将广泛的支持人类信息社会各行各业的无线接入需求,将不再局限于目前的蜂窝运营商单独使用的情况。
因此,为了满足未来的需要,目前亟需一种开放式的蜂窝网络系统以支持多种业务的实现。
发明内容
本申请实施例提供了一种开放式多业务蜂窝网络系统及业务实现方法,用以实现多种 业务系统的开放共享。
本申请实施例提供的开放式多业务蜂窝网络系统,包括:接入网子系统,与所述接入网子系统连接的业务子系统,分别与所述接入网子系统和所述业务子系统连接的运营支撑与公共服务子系统,以及与所述运营支撑与公共服务子系统连接的规则与监管子系统;其中,所述业务子系统为N个,N>1;
所述接入网子系统,用于为用户终端提供接入所述业务子系统的无线接入服务;
所述业务子系统,用于提供不同类型的业务服务;
所述运营支撑与公共服务子系统,用于为所述业务子系统使用所述接入网子系统的无线接入资源提供资源调配服务,以及为所述开放式多业务蜂窝网络系统提供运营支撑服务;
规则与监管子系统,用于为所述业务运营支撑与公共服务子系统提供管理规则。
优选地,所述管理规则包括以下规则中的一种或多种:所述资源调配服务所使用的资源调配规则、所述运营支撑服务所使用的规则。
优选地,所述运营支撑与公共服务子系统还用于为用户终端接入所述业务子系统提供公共的接入管理服务。
优选地,所述管理规则还包括所述公共的接入管理服务所使用的规则。
优选地,所述所述资源调配服务所使用的资源调配规则,包括:每个业务子系统对所述接入网子系统的无线接入资源的使用优先级,和/或,每个业务子系统对所述接入网子系统的无线接入资源的分配比例。
优选地,所述运营支撑与公共服务子系统具体用于:将所述接入网子系统中的接入设备的无线接入资源分配给所述N个业务子系统以共享方式使用;或者
所述接入网子系统的无线接入资源包括彼此独立的N部分接入设备,所述运营支撑与公共服务子系统具体用于:将所述N部分接入设备的无线接入资源分配给所述N个业务子系统使用,每个业务子系统以独占方式使用所述N部分接入设备中的一部分接入设备的无线接入资源;或者
所述运营支撑与公共服务子系统具体用于:将所述接入网子系统的接入设备中至少一部分接入设备的无线接入资源分配给M个业务子系统以共享方式使用,M<N,将其余部分接入设备的无线接入资源分配给(N-M)个业务子系统使用,所述(N-M)个业务子系统中的每个业务子系统以独占方式使用所述其余部分接入设备中的一部分接入设备的无线接入资源。
进一步地,如果共享无线接入资源,所述运营支撑与公共服务子系统具体用于:将所述接入网子系统的无线接入资源划分为K个资源切片,K≥N,将一个或多个资源切片分别分配给所述N个业务接入网子系统使用,且每个业务接入网子系统分配到的资源切片互 不相同。
进一步地,所述运营支撑与公共服务子系统具体用于:根据所述规则与监管子系统配置的管理规则划分资源切片。
优选地,所述规则与监管子系统还与所述业务子系统连接;所述规则与监管子系统还用于:监控和管理所述业务子系统对所述接入网子系统的无线接入资源的使用情况。
进一步地,所述规则与监管子系统具体用于:接收所述业务子系统上报的针对无线接入资源使用情况的监控测量信息,根据监控测量信息调整所述资源调配规则,其中,所述资源调配规则是所述资源调配服务所使用的规则;和/或,接收第一业务子系统上报的资源调配更新请求,根据其它业务子系统的无线接入资源使用情况,调整所述资源调配规则;所述第一业务子系统为所述N个业务子系统中的任意一个业务子系统。
优选地,至少有一个业务子系统还用于:为用户终端提供本业务子系统专用的接入管理服务。
优选地,所述接入网子系统提供的所述无线接入服务至少包括:建立和维护用户终端与所述业务子系统之间的控制面和/或用户面连接;建立和维护用户终端与所述运营支撑与公共服务子系统之间的控制面和/或用户面连接。
优选地,还包括:用户终端,用于通过所述接入网子系统接入所述业务子系统以实现对应的业务,所以用户终端支持一种或多种业务子系统。
本申请实施例提供的基于上述开放式多业务蜂窝网络系统实现的接入方法,包括:
接入网子系统接收用户终端发送的接入请求;
所述接入网子系统根据所述接入请求建立与所述用户终端之间的无线连接,并将所述接入请求发送给所述运营支撑与公共服务子系统;
所述运营支撑与公共服务子系统根据所述接入请求对所述用户终端进行鉴权,并在鉴权通过后,与所述用户终端建立连接。
进一步地,与所述用户终端建立连接之后,还包括:
所述运营支撑与公共服务子系统获取所述用户终端签约的业务子系统;
所述运营支撑与公共服务子系统根据所述用户终端签约的业务子系统,为所述用户终端建立与所述用户终端签约的业务子系统之间的连接。
进一步地,所述运营支撑与公共服务子系统获取所述用户终端签约的业务子系统,包括:
所述运营支撑与公共服务子系统向所述用户终端发送接入响应,所述接入响应中携带有对所述用户终端鉴权通过的信息;
所述运营支撑与公共服务子系统接收所述用户终端根据所述接入响应上报的所述用户终端签约的业务子系统的指示信息。
本申请实施例提供的基于上述开放式多业务蜂窝网络系统实现的业务建立方法,包括:
业务子系统接收用户终端发送的业务建立请求;
所述业务子系统接纳所述业务建立请求,并建立所述业务子系统与所述用户终端之间的无线承载;
所述业务子系统与所述用户终端通过所述无线承载进行用户面数据传输。
进一步地,还包括:所述业务子系统接收所述用户终端发送的业务删除请求,所述业务删除请求是所述用户设备与所述业务子系统之间的用户面数据传输结束后发送的;所述业务子系统根据所述业务删除请求删除与所述用户终端之间的无线承载。
本申请实施例提供的基于上述开放式多业务蜂窝网络系统实现的无线接入资源调配方法,包括:
运营支撑与公共服务子系统获取规则与监管子系统中配置的各业务子系统的无线接入资源调配规则;
所述运营支撑与公共服务子系统根据各业务子系统的无线接入资源调配规则,对各业务子系统的无线接入资源使用情况进行监控;
当监控到第一业务子系统的无线接入资源使用达到所述第一业务子系统的无线接入资源使用上限时,指示所述第一业务子系统拒绝接入新的用户终端。
进一步地,还包括:当所述运营支撑与公共服务子系统监控到所述第一业务子系统的无线接入资源使用低于所述第一业务子系统的无线接入资源使用上限或一小于所述上限的门限值时,指示所述第一业务子系统允许接入新的用户终端。
本申请实施例提供的基于上述开放式多业务蜂窝网络系统实现的资源调配规则协商方法,包括:
规则与监管子系统接收业务子系统上报的针对无线接入资源使用情况的监控测量信息;
所述规则与监管子系统根据业务子系统上报的监控测量信息,调整资源调配服务所使用的资源调配规则。
进一步地,还包括:所述规则与监管子系统接收第一业务子系统上报的资源调配更新请求,其中,所述第一业务子系统监测到自身的无线接入资源超过设定门限时发送所述资源调配更新请求;
所述规则与监管子系统根据业务子系统上报的监控测量信息,调整资源调配服务所使用的资源调配规则,包括:
所述规则与监管子系统根据其它业务子系统的无线接入资源使用情况,降低所述其它业务子系统中低负载业务子系统的无线接入资源分配比例,为所述第一业务子系统提高无 线接入资源分配比例。
本申请的上述实施例中,一方面,接入网子系统为用户终端提供接入所述业务子系统的无线接入服务,运营支撑与公共服务子系统可为所述业务子系统使用所述接入网子系统的无线接入资源提供资源调配服务,从而实现了业务子系统对接入网子系统的无线接入资源的共享,另一方面,运营支撑与公共服务子系统可为用户终端接入所述业务子系统提供公共的接入管理服务,从而实现了接入管理服务的共享,进而实现了能够支持多种业务的开放式蜂窝网络系统。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为现有技术中的4G蜂窝网络系统的架构示意图;
图2为本申请实施例提供的开放式多业务蜂窝网络系统的架构示意图;
图3为本申请实施例提供的接入方法的流程示意图;
图4为本申请实施例提供的业务建立方法的流程示意图;
图5为本申请实施例提供的无线接入资源调配方法的流程示意图;
图6为本申请实施例提供的资源调配规则协商方法的流程示意图。
具体实施方式
为了使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请作进一步地详细描述,显然,所描述的实施例仅仅是本申请一部份实施例,而不是全部的实施例。基于本申请中的实施例,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它实施例,都属于本申请保护的范围。
本申请实施例提出了一种开放式多业务蜂窝网络系统,实现基础运营、电信业务以及其它业务系统的开放共享和合理隔离,可以实现通过一个接入网子系统支撑多个业务子系统共同运营。该开放式多业务蜂窝网络系统可作为未来5G通信系统的架构。
参见图2,为本申请实施实例提供的开放式多业务蜂窝网络系统100的架构示意图。如图所示,该开放式多业务蜂窝网络系统可包括:接入网子系统1,与所述接入网子系统1连接的业务子系统2,分别与所述接入网子系统1和所述业务子系统2连接的运营支撑与公共服务子系统3,以及与所述运营支撑与公共服务子系统3连接的规则与监管子系统 4。进一步地,所述规则与监管子系统4还可与所述业务子系统2连接。
其中,所述业务子系统2可以是多个,比如为N个,N>1。每个业务子系统2为一个运营商或业务提供商负责的具有一类典型业务特征的业务运营系统,所述N个业务服务子系统2属于至少两个运营商或属于至少两个业务提供商。例如,业务子系统A为电信业务系统,业务子系统B为物联网业务系统,业务子系统C为铁路调度管理系统,业务子系统D为智能交通管理系统。
进一步地,开放式多业务蜂窝网络系统100还可包括用户终端5。所述用户终端5为无线网络中的用户设备,用于通过所述接入网子系统接入所述业务子系统以实现对应的业务。用户终端5可支持一种或多种业务子系统。比如,如图所示,用户终端A支持业务子系统A,用户终端B支持业务子系统B,用户终端C支持业务子系统C,用户终端D支持业务子系统A和业务子系统B,用户终端E支持业务子系统A、业务子系统B和业务子系统C。
下面结合图2详细描述各子系统或组成部分的主要功能。
接入网子系统1主要用于为用户终端5提供接入所述业务子系统2的无线接入服务;
业务子系统2主要用于提供不同类型的业务服务,比如,每个业务子系统可提供一种类型的业务服务;
运营支撑与公共服务子系统3主要用于为所述业务子系统2使用所述接入网子系统1的无线接入资源提供资源调配服务,以及为所述开放式多业务蜂窝网络系统提供运营支撑服务;
规则与监管子系统4主要用于为所述业务运营支撑与公共服务子系统3提供管理规则。
优选地,运营支撑与公共服务子系统3还用于为用户终端5接入所述业务子系统2提供公共的接入管理服务。
优选地,所述管理规则可包括以下规则中的一种或多种:所述资源调配服务所使用的资源调配规则、所述运营支撑服务所使用的规则。其中,所述所述资源调配服务所使用的资源调配规则,可包括:每个业务子系统对所述接入网子系统的无线接入资源的使用优先级,和/或,每个业务子系统对所述接入网子系统的无线接入资源的分配比例。
优选地,所述管理规则还可以包括公共的接入管理服务所使用的规则。
比如,预先在规则监管子系统中配置各业务子系统的无线接入资源使用规则,如资源调配规则。以图中的业务子系统A、业务子系统B和业务子系统C三个业务子系统为例,这三个业务子系统对接入网子系统的无线接入资源的使用具有同等优先级,接入网子系统中的每一个接入设备为这三个业务子系统分别预留三分之一的无线接入资源和对应的传输资源。除了为这三个业务子系统均匀分配无线接入资源外,也可以按照一定的比例,非 均匀地为这三个业务子系统分配无线接入资源。
特别地,在特殊时期和特定场景下,可以为一个业务子系统配置绝对优先的无线接入资源使用优先级。例如,发生灾害时,应急指挥业务子系统可以优先使用接入网子系统中的无线接入资源。
进一步地,如果所述规则与监管子系统4与所述业务子系统2之间存在连接,则所述规则与监管子系统4还用于:监控和管理所述业务子系统2对所述接入网子系统1的无线接入资源的使用情况。
接入网子系统1中可包含多个接入设备。典型的接入网络子系统1的结构类似于4G网络的接入网架构。接入网子系统1中包含的接入设备种类可以有多种,比如,宏基站、低功率基站、AP(accss point,接入点)等。接入设备还可以是集中式接入设备或分布式接入设备,比如,一种分布式基站的结构为包括多个射频拉远单元以及所述多个射频拉远单元连接的基带处理单元。接入网子系统1中的接入设备可通过回程链路与业务子系统2中的设备连接,从而在物理层实现与业务子系统的连接。
业务子系统2可使用接入网子系统1提供的无线接入资源,从而使用户终端5接入所述开放式多业务蜂窝网络系统100。业务子系统2可以采用共享方式使用接入网子系统1提供的无线接入资源,该共享方式受所述运营支撑与公共服务子系统3的控制和管理。
具体来说,在一种实现方式中,所述运营支撑与公共服务子系统3可将所述接入网子系统1中的接入设备分配给所述N个业务子系统2以共享方式使用。这样,所有业务子系统都可以以共享方式使用所述接入网子系统1相同的无线接入资源,比如,所述接入网子系统1中的一个接入设备的无线接入资源可分配给各个业务接入子系统使用。
在另一种实现方式中,所述接入网子系统1的无线接入资源包括彼此独立的N部分接入设备的无线接入资源。这种情况下,所述运营支撑与公共服务子系统3可将所述N部分接入设备的无线接入资源分配给所述N个业务子系统使用,每个业务子系统以独占方式使用所述N部分接入设备中的一部分接入设备的无线接入资源。也就是说,可以为每个业务子系统独立建设各自的接入网络,一个接入设备仅为对应的一个业务子系统提供无线接入资源。
在另一种实现方式中,可将上述共享方式与独占方式结合使用。具体来说,所述运营支撑与公共服务子系统3可将所述接入网子系统1的接入设备中至少一部分接入设备的无线接入资源分配给M个业务子系统以共享方式使用,M<N,将其余部分接入设备的无线接入资源分配给(N-M)个业务子系统使用,所述(N-M)个业务子系统中的每个业务子系统以独占方式使用所述其余部分接入设备中的一部分接入设备的无线接入资源。
上述无线接入资源的共享具体可通过如下方式来实现:
所述运营支撑与公共服务子系统3将所述接入网子系统1的无线接入资源划分为K个 资源切片,K≥N,将一个或多个资源切片分别分配给所述N个业务接入网子系统使用,且每个业务接入网子系统分配到的资源切片互不相同。
其中,所述资源切片可以是时域资源的切片,从而实现多个业务子系统分时共享无线接入资源。所述资源切片也可以是频率资源的切片,从而实现多个业务子系统频分共享无线接入资源。所述资源切片也可以是时频资源的切片。本申请实施例对如何划分资源切片不做限制,只要保证同一时刻不同业务子系统使用的无线接入资源互不相同即可。
通过划分资源切片并分配给业务子系统使用的方式,即使接入网子系统中的接入设备在物理上属于一个网络,但在逻辑上进行了隔离,从无线接入资源的角度来看,不同的业务子系统使用不同的虚拟接入网络,从而实现了无线接入资源的共享与合理隔离。
优选地,所述运营支撑与公共服务子系统3可根据所述规则与监管子系统4配置的资源调配规则划分资源切片。该规则可具体规定资源切片划分方式以及资源切片的大小。采用这种方式,可灵活方便地调整资源切片划分规则。
如前所述,所述规则与监管子系统4可以与所述业务子系统2连接,从而针对所述业务子系统对所述接入网子系统的无线接入资源的使用情况进行监控和管理,以便进一步调整资源调配规则。
具体来说,所述规则与监管子系统4可接收所述业务子系统2上报的针对无线接入资源使用情况的监控测量信息,根据监控测量信息调整所述资源调配规则;和/或,所述规则与监管子系统4接收第一业务子系统上报的资源调配更新请求,根据其它业务子系统或所述N个业务子系统的无线接入资源使用情况,调整所述资源调配规则,所述第一业务子系统为所述N个业务子系统中的任意一个业务子系统。
比如,各业务子系统上报的监控测量信息可以是无线接入资源的负载情况,或者是网络忙闲程度。相应地,所述规则与监管子系统4根据各业务子系统上报的监控测量信息,如果发现某个业务子系统的无线接入资源的负载较大,则可以通过调整资源调配规则为该业务子系统分配更多的无线接入资源。
再比如,如果某个业务子系统监测到自身的无线接入资源负荷较大,则可以向所述规则与监管子系统4发送资源调配更新请求,以请求更多的无线接入资源。所述规则与监管子系统接收到该资源调配更新请求后,根据各个业务子系统的无线接入资源使用情况,若发现另外的某个或某些业务接入子系统的无线接入资源使用量较少,比如低于设定的阈值,则可以通过调整资源调配规则来为发起该请求的业务子系统分配更多的无线接入资源。
进一步地,所述规则与监管子系统4可向所述业务子系统2发送针对无线接入资源使用情况的监控测量配置信息,以使所述业务子系统根据所述配置信息,针对无线接入资源使用情况进行监控测量。所述监控测量配置信息可以包含需要监控和上报的参数类型以及 上报的时间或上报的方式等。
通过上述过程实现了基于协商的资源调配规则的调整功能。基于协商的资源调配规则的调整功能,可根据各业务子系统的无线接入资源使用情况,动态调整资源配置规则,以提高无线接入资源的使用效率。
开放式多业务蜂窝网络系统100允许不同的业务子系统的运营策略存在差异,根据需要,允许业务子系统具有自己专用的接入管理服务,比如,业务接入、鉴权、移动性管理等功能。
具体来说,开放式多业务蜂窝网络系统100中,允许有一个业务子系统或多个业务子系统为用户终端提供本业务子系统专用的业务接入、鉴权、移动性管理、用户托管服务中的一种或多种。
比如,业务子系统A需要不同于所述运营支撑与公共服务子系统所提供的公共的接入管理服务中的鉴权流程或鉴权算法,则业务子系统A配置自己专用的鉴权流程或鉴权算法,从而对用户的接入进行鉴权。
开放式多业务蜂窝网络系统100中,所述接入网子系统提供的所述无线接入服务至少包括:建立和维护用户终端与所述业务子系统之间的控制面和/或用户面连接;以及,建立和维护用户终端与所述运营支撑与公共服务子系统之间的控制面和/或用户面连接。其中,用户终端与业务子系统之间的控制面连接,主要用来传输终端与业务子系统之间的控制信令,比如通过该控制面连接交互用户终端的接入、鉴权或移动性管理相关的信令;用户终端与业务子系统之间的用户面连接,主要用来传输业务数据;用户终端与所述运营支撑与公共服务子系统之间的控制面连接主要用来传输终端与业务子系统之间的控制信令,比如通过该控制面连接交互用户终端的接入、鉴权或移动性管理相关的信令。
开放式多业务蜂窝网络系统100中,所述运营支撑与公共服务子系统提供的公共的接入管理服务,至少可以包括:接入、鉴权、移动性管理和用户托管中的一种或多种服务,此外,还可以包括其它管理服务。
下面对开放式多业务蜂窝网络系统100中的各种接口进行详细描述。
如图2所示,开放式多业务蜂窝网络系统100中包括以下类型的接口:
第一接口(图中示为NU接口):用户终端5与接入网子系统1之间的接口,该接口为无线通信接口;
第二接口:接入网子系统与业务子系统之间的接口,所述第二接口包括控制面接口(图中示为SN接口)和/或用户面接口(图中示为SU接口);
第三接口:运营支撑与公共服务子系统与接入网子系统之间的接口。所述第三接口,所述第三接口包括第一子接口(图中示为C1接口)、第二子接口(图中示为C2接口)和第三子接口(图中示为C3接口);
第四接口(图中示为CS接口):运营支撑与公共服务子系统与业务子系统之间的接口;
第五接口(图中示为CR接口):运营支撑与公共服务子系统与规则与监管子系统之间的接口。
进一步地,还可包括:
第六接口(图中示为SR接口):业务子系统与规则与监管子系统之间的接口。
上述的各种接口定义了相应子系统之间的通信方式,包括需要交互的内容、消息格式、信令流程等,通过上述接口可以实现相应的业务功能,其中:
NU接口主要用来实现用户终端到所述开放式多业务蜂窝网络系统的无线链路连接,所述无线链路连接承载用户终端与所述运营支撑与公共服务子系统之间的连接,以及用户终端与所述业务子系统之间的连接;
SN接口主要用来实现用户终端与业务子系统之间的控制面信令交互;
SU接口主要用来实现用户终端与业务子系统之间的用户面数据传输;
C1接口主要用来实现对所述接入网子系统的无线接入资源的调配管理;
C2接口主要用来实现对用户终端接入业务子系统的公共的接入管理,比如,可实现接入、鉴权、移动性管理等功能;
C3接口为操作维护接口,主要用来实现对所述接入网子系统的操作维护与管理;
CS接口主要用来实现所述无线接入资源的调配管理,以及所述公共的接入管理;比如,实现资源调配、用户托管、移动性保证、服务质量保证的必要的信令交互;
CR接口主要用来实现管理规则的交互;比如,用以提供运营支撑与公共服务的规则的提取和结果的反馈;
SR接口主要用来实现所述管理规则中的资源调配规则的协商和调整,以及根据监管需求的监控测量信息的上报等。
通过以上描述可以看出,本申请实施例,一方面,接入网子系统为用户终端提供接入所述业务子系统的无线接入服务,运营支撑与公共服务子系统可为所述业务子系统使用所述接入网子系统的无线接入资源提供资源调配服务,从而实现了业务子系统对接入网子系统的无线接入资源的共享,另一方面,运营支撑与公共服务子系统可为用户终端接入所述业务子系统提供公共的接入管理服务,从而实现了接入管理服务的共享,进而实现了能够支持多种业务的开放式蜂窝网络系统。
基于图2所示的开放式多业务蜂窝网络系统,图3示出了本申请实施例提供的一种接入方法的流程示意图。
当用户终端开机后,可进入接入流程。如图3所示,该接入流程可包括:
步骤301,接入网子系统接收用户终端发送的接入请求。
该步骤中,用户终端通过NU接口发送所述接入请求。
步骤302,所述接入网子系统根据所述接入请求建立与所述用户终端之间的无线连接,并将所述接入请求发送给所述运营支撑与公共服务子系统。
该步骤中,接入网子系统为所述用户终端分配无线资源,与所述用户终端建立无线链路,并通过C2接口将该接入请求发送给运营支撑与公共服务子系统。
步骤303,所述运营支撑与公共服务子系统根据所述接入请求对所述用户终端进行鉴权,并在鉴权通过后,与所述用户终端建立连接,以使该用户终端驻留在网络中。
该步骤中,运营支撑与公共服务子系统对所述用户终端进行鉴权,在鉴权通过后,基于所述用户终端与所述接入网子系统之间的无线链路,与所述用户终端建立连接,即,运营支撑与公共服务子系统与所述用户终端之间的连接承载在接入网子系统与该用户终端之间的无线链路上。所述运营支撑与公共服务子系统与所述用户终端之间的连接包括控制面连接和/或用户面连接。
进一步地,在步骤303之后还可包括以下步骤304和步骤305:
步骤304,所述运营支撑与公共服务子系统获取所述用户终端签约的业务子系统。
该步骤中,运营支撑与公共服务子系统中可配置有用于存储用户签约信息的设备,运营支撑与公共服务子系统可从该设备获取用户终端签约的业务子系统。
在另一种实现方式中,所述运营支撑与公共服务子系统向所述用户终端发送接入响应,所述接入响应中携带有对所述用户终端鉴权通过的信息;所述运营支撑与公共服务子系统接收所述用户终端根据所述接入响应上报的所述用户终端签约的业务子系统的指示信息。
步骤305,所述运营支撑与公共服务子系统根据所述用户终端签约的业务子系统,与所述用户终端签约的业务子系统交互,使所述用户终端签约的业务子系统与所述用户终端之间建立连接。
该步骤中,运营支撑与公共服务子系统可通过CS接口与所述用户终端签约的业务子系统进行交互,使该业务子系统与该用户终端之间建立连接。所述连接可包括控制面连接和/或用户面连接。
需要说明的是,图3所示的接入流程仅为一个实例,在实际应用中,上述流程中的每个步骤可能由一系列交互过程来实现。
基于图2所示的开放式多业务蜂窝网络系统,图4示出了本申请实施例提供的一种业务建立方法的流程示意图。
在用户终端与接入网子系统已经建立无线链路的情况下,如图4所示,该业务建立流程可包括:
步骤401,业务子系统接收用户终端发送的业务建立请求。
该步骤中,由于用户终端与接入网子系统已经建立无线链路,因此该业务建立请求可 通过该无线链路发送到接入网子系统,并由接入网子系统发送给业务子系统。
步骤402,所述业务子系统接纳所述业务建立请求,并建立所述业务子系统与所述用户终端之间的无线承载。
该步骤中,如果业务子系统没有专用的接入管理服务功能,则可直接接纳该业务建立请求;如果业务子系统具有专用的接入管理服务功能,则根据该专用的接入管理服务功能对该业务建立请求进行接入控制以及鉴权等处理。
所述业务子系统与所述用户终端之间基于所述用户终端与接入网子系统之间的无线链路建立无线承载。
步骤403,所述业务子系统与所述用户终端通过所述无线承载进行用户面数据传输。
进一步地,当所述用户终端完成数据传输后,该用户终端可发起连接释放过程,该过程可包括以下步骤:
步骤404,所述业务子系统接收所述用户终端发送的业务删除请求,所述业务删除请求是所述用户设备与所述业务子系统之间的用户面数据传输结束后发送的;
步骤405,所述业务子系统根据所述业务删除请求删除与所述用户终端之间的无线承载,并进一步释放相关的资源。
基于图2所示的开放式多业务蜂窝网络系统,图5示出了本申请实施例提供的一种无线接入资源调配方法的流程示意图。
如图所示,该流程可包括以下步骤:
步骤501,运营支撑与公共服务子系统获取规则与监管子系统中配置的各业务子系统的无线接入资源调配规则。
所述各业务子系统的无线接入资源调配规则可预先配置在规则监管子系统中。如前所述,所述资源调配规则可定义各业务子系统对无线接入资源的使用优先级和/或分配比例。
步骤502,所述运营支撑与公共服务子系统根据各业务子系统的无线接入资源调配规则,对各业务子系统的无线接入资源使用情况进行监控。
该步骤中,运营支撑与公共服务子系统可通过C1接口对各业务子系统的无线接入资源使用情况进行监控,监控内容可包括业务子系统的无线接入资源使用是否达到上限,和/或,是否有用户终端请求接入高优先级的业务子系统。
步骤503,当监控到第一业务子系统的无线接入资源使用达到所述第一业务子系统的无线接入资源使用上限时,指示所述第一业务子系统拒绝接入新的用户终端。
进一步地,当运营支撑与公共服务子系统监控到所述第一业务子系统的无线接入资源使用低于所述第一业务子系统的无线接入资源使用上限或小于所述上限的门限值时,指示所述第一业务子系统允许接入新的用户终端。
进一步地,如果运营支撑与公共服务子系统监控到有用户终端请求接入高优先级的业 务子系统,但该高优先级的业务子系统当前的无线接入资源使用已达到该业务子系统的上限,则运营支撑与公共服务子系统为该业务子系统分配新的无线接入资源,以接入该用户终端。
需要说明的是,图5所示的流程没有严格的时序要求。比如,步骤501可在一段时间内仅执行一次,而步骤502可在该段时间内持续执行,而步骤503则根据监控情况来执行。
基于图2所示的开放式多业务蜂窝网络系统,图6示出了本申请实施例提供的一种资源调配规则协商方法的流程示意图。
如图所示,该流程可包括以下步骤:
步骤601,规则与监管子系统接收业务子系统上报的针对无线接入资源使用情况的监控测量信息。
该步骤中,规则与监管子系统可通过SR接口接收业务子系统上报的针对无线接入资源使用情况的监控测量信息。其中,全部或部分业务子系统可进行所述监控测量信息的上报。规则与监管子系统可配置全部或部分业务子系统进行监控测量信息的上报,并可进一步配置监控测量的内容以及上报的方式,比如是事件触发上报还是周期上报。
步骤602,所述规则与监管子系统根据业务子系统上报的监控测量信息,调整资源调配服务所使用的资源调配规则。所述调整资源调配服务所使用的资源调配规则,可以是调整业务子系统的资源切片分配比例。
例如,规则与监管子系统若根据业务子系统上报的监控测量信息发现某业务子系统的无线接入资源需求量较大,可以适当为该业务子系统增加无线接入资源的分配比例;如果发现某业务子系统的无线接入资源需求量较小,可以适当为该业务子系统减少无线接入资源的分配比例。
进一步地,以第一业务子系统监测到自身的无线接入资源超过设定门限为例,当第一业务子系统监测到自身的无线接入资源超过设定门限时,发送资源调配更新请求给规则与监管子系统。在步骤602中,所述规则与监管子系统接收第一业务子系统上报的资源调配更新请求后,根据其它业务子系统的无线接入资源使用情况,降低所述其它业务子系统中低负载业务子系统的无线接入资源分配比例,为所述第一业务子系统提高无线接入资源分配比例。
例如,规则与监管子系统可调整各个业务子系统可使用的资源切片的比例。当出现某个业务子系统资源负载超过门限时,该业务子系统可提出增加资源比例的请求,规则子系统根据其它几个业务子系统的无线接入资源使用情况,降低其中低负载业务子系统的资源切片的分配比例,增加高负载业务子系统的资源切片比例。
进一步地,当在一定的特殊时期和场景下,规则与监管子系统可以将某一业务子系统的无线接入资源的使用权配置为绝对优先。例如发生灾害时,配置应急指挥业务系统可以 优先使用接入网络中的无线接入资源。
综上所述,本申请实施例基于未来5G网络的接入部分做为公共基础网络,服务与未来连接的信息网络社会的需求,通过一种开放的多业务系统共享网络架构和方法,实现了多个行业或者多个业务系统按照一定的规则共享一套公共的物理无线接入基础网络,提高为网络运行效率和业务支撑能力,避免了网络重复建设和资源浪费。
本申请是参照根据本申请实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
尽管已描述了本申请的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例作出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例以及落入本申请范围的所有变更和修改。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。

Claims (24)

  1. 一种开放式多业务蜂窝网络系统,其特征在于,包括:接入网子系统,与所述接入网子系统连接的业务子系统,分别与所述接入网子系统和所述业务子系统连接的运营支撑与公共服务子系统,以及与所述运营支撑与公共服务子系统连接的规则与监管子系统;其中,所述业务子系统为N个,N>1;
    所述接入网子系统,用于为用户终端提供接入所述业务子系统的无线接入服务;
    所述业务子系统,用于提供不同类型的业务服务;
    所述运营支撑与公共服务子系统,用于为所述业务子系统使用所述接入网子系统的无线接入资源提供资源调配服务,以及为所述开放式多业务蜂窝网络系统提供运营支撑服务;
    规则与监管子系统,用于为所述业务运营支撑与公共服务子系统提供管理规则。
  2. 如权利要求1所述的开放式多业务蜂窝网络系统,其特征在于,所述管理规则包括以下规则中的一种或多种:所述资源调配服务所使用的资源调配规则、所述运营支撑服务所使用的规则。
  3. 如权利要求2所述的开放式多业务蜂窝网络系统,其特征在于,所述资源调配服务所使用的资源调配规则,包括:每个业务子系统对所述接入网子系统的无线接入资源的使用优先级,和/或,每个业务子系统对所述接入网子系统的无线接入资源的分配比例。
  4. 如权利要求1~3任一项所述的开放式多业务蜂窝网络系统,其特征在于,所述运营支撑与公共服务子系统还用于为用户终端接入所述业务子系统提供公共的接入管理服务。
  5. 如权利要求4所述的开放式多业务蜂窝网络系统,其特征在于,所述管理规则还包括:所述公共的接入管理服务所使用的规则。
  6. 如权利要求1~5任一项所述的开放式多业务蜂窝网络系统,其特征在于,
    所述运营支撑与公共服务子系统具体用于:将所述接入网子系统中的接入设备的无线接入资源分配给所述N个业务子系统以共享方式使用;或者
    所述接入网子系统的无线接入资源包括彼此独立的N部分接入设备,所述运营支撑与公共服务子系统具体用于:将所述N部分接入设备的无线接入资源分配给所述N个业务子系统使用,每个业务子系统以独占方式使用所述N部分接入设备中的一部分接入设备的无线接入资源;或者
    所述运营支撑与公共服务子系统具体用于:将所述接入网子系统的接入设备中至少一部分接入设备的无线接入资源分配给M个业务子系统以共享方式使用,M<N,将其余部 分接入设备的无线接入资源分配给(N-M)个业务子系统使用,所述(N-M)个业务子系统中的每个业务子系统以独占方式使用所述其余部分接入设备中的一部分接入设备的无线接入资源。
  7. 如权利要求6所述的开放式多业务蜂窝网络系统,其特征在于,所述运营支撑与公共服务子系统具体用于:
    将所述接入网子系统的无线接入资源划分为K个资源切片,K≥N,将一个或多个资源切片分别分配给所述N个业务接入网子系统使用,且每个业务接入网子系统分配到的资源切片互不相同。
  8. 如权利要求7所述的开放式多业务蜂窝网络系统,其特征在于,所述运营支撑与公共服务子系统具体用于:根据所述规则与监管子系统配置的管理规则划分资源切片。
  9. 如权利要求1~5任一项所述的开放式多业务蜂窝网络系统,其特征在于,所述规则与监管子系统还与所述业务子系统连接;
    所述规则与监管子系统还用于:监控和管理所述业务子系统对所述接入网子系统的无线接入资源的使用情况。
  10. 如权利要求9所述的开放式多业务蜂窝网络系统,其特征在于,所述规则与监管子系统具体用于:
    接收所述业务子系统上报的针对无线接入资源使用情况的监控测量信息,根据监控测量信息调整资源调配规则,其中,所述资源调配规则是所述资源调配服务所使用的规则;和/或
    接收第一业务子系统上报的资源调配更新请求,根据其它业务子系统的无线接入资源使用情况,调整所述资源调配规则;所述第一业务子系统为所述N个业务子系统中的任意一个业务子系统。
  11. 如权利要求1~10中任一项所述的开放式多业务蜂窝网络系统,其特征在于,至少有一个业务子系统还用于:为用户终端提供本业务子系统专用的接入管理服务。
  12. 如权利要求1~10中任一项所述的开放式多业务蜂窝网络系统,其特征在于,所述接入网子系统提供的所述无线接入服务至少包括:
    建立和维护用户终端与所述业务子系统之间的控制面和/或用户面连接;
    建立和维护用户终端与所述运营支撑与公共服务子系统之间的控制面和/或用户面连接。
  13. 如权利要求4~10中任一项所述的开放式多业务蜂窝网络系统,其特征在于,所述接入管理服务,至少包括:接入、鉴权、移动性管理和用户托管中的一种或多种服务。
  14. 如权利要求1~13中任一项所述的开放式多业务蜂窝网络系统,其特征在于,还包括:
    用户终端,用于通过所述接入网子系统接入所述业务子系统以实现对应的业务,所以用户终端支持一种或多种业务子系统。
  15. 如权利要求4~14中任一项所述的开放式多业务蜂窝网络系统,其特征在于,
    所述接入网子系统与用户终端之间存在第一接口,所述第一接口用来实现用户终端到所述开放式多业务蜂窝网络系统的无线链路连接,所述无线链路连接承载用户终端与所述运营支撑与公共服务子系统之间的连接,以及用户终端与所述业务子系统之间的连接;
    所述接入网子系统与所述业务子系统之间存在第二接口,所述第二接口包括控制面接口和/或用户面接口,所述控制面接口用来实现用户终端与业务子系统之间的控制面信令交互,所述用户面接口用来实现用户终端与业务子系统之间的用户面数据传输;
    所述运营支撑与公共服务子系统与所述接入网子系统之间存在第三接口,所述第三接口包括第一子接口、第二子接口和第三子接口,所述第一子接口用来实现对所述接入网子系统的无线接入资源的调配管理,所述第二子接口用来实现对用户终端接入业务子系统的公共的接入管理,所述第三子接口用来实现对所述接入网子系统的操作维护与管理;
    所述运营支撑与公共服务子系统与所述业务子系统之间存在第四接口,所述第四接口用来实现所述无线接入资源的调配管理以及所述公共的接入管理;
    所述运营支撑与公共服务子系统与所述规则与监管子系统之间存在第五接口,所述第五接口用来实现管理规则的交互。
  16. 如权利要求15所述的开放式多业务蜂窝网络系统,其特征在于,所述业务子系统与所述规则与监管子系统之间存在第六接口,所述第六接口用来实现所述管理规则中的资源调配规则的协商和调整。
  17. 一种基于如权利要求4至16中任意一项所述的开放式多业务蜂窝网络系统实现的接入方法,其特征在于,包括:
    接入网子系统接收用户终端发送的接入请求;
    所述接入网子系统根据所述接入请求建立与所述用户终端之间的无线连接,并将所述接入请求发送给所述运营支撑与公共服务子系统;
    所述运营支撑与公共服务子系统根据所述接入请求对所述用户终端进行鉴权,并在鉴权通过后,与所述用户终端建立连接。
  18. 如权利要求17所述的方法,其特征在于,与所述用户终端建立连接之后,还包括:
    所述运营支撑与公共服务子系统获取所述用户终端签约的业务子系统;
    所述运营支撑与公共服务子系统根据所述用户终端签约的业务子系统,为所述用户终端建立与所述用户终端签约的业务子系统之间的连接。
  19. 如权利要求18所述的方法,其特征在于,所述运营支撑与公共服务子系统获取 所述用户终端签约的业务子系统,包括:
    所述运营支撑与公共服务子系统向所述用户终端发送接入响应,所述接入响应中携带有对所述用户终端鉴权通过的信息;
    所述运营支撑与公共服务子系统接收所述用户终端根据所述接入响应上报的所述用户终端签约的业务子系统的指示信息。
  20. 一种基于如权利要求1至16中任意一项所述的开放式多业务蜂窝网络系统实现的业务建立方法,其特征在于,包括:
    业务子系统接收用户终端发送的业务建立请求;
    所述业务子系统接纳所述业务建立请求,并建立所述业务子系统与所述用户终端之间的无线承载;
    所述业务子系统与所述用户终端通过所述无线承载进行用户面数据传输。
  21. 如权利要求20所述的方法,其特征在于,还包括:
    所述业务子系统接收所述用户终端发送的业务删除请求,所述业务删除请求是所述用户设备与所述业务子系统之间的用户面数据传输结束后发送的;
    所述业务子系统根据所述业务删除请求删除与所述用户终端之间的无线承载。
  22. 一种基于如权利要求1至16中任意一项所述的开放式多业务蜂窝网络系统实现的资源调配规则协商方法,其特征在于,包括:
    规则与监管子系统接收业务子系统上报的针对无线接入资源使用情况的监控测量信息;
    所述规则与监管子系统根据业务子系统上报的监控测量信息,调整资源调配服务所使用的资源调配规则。
  23. 如权利要求22所述的方法,其特征在于,还包括:
    所述规则与监管子系统接收第一业务子系统上报的资源调配更新请求,其中,所述第一业务子系统监测到自身的无线接入资源超过设定门限时发送所述资源调配更新请求;
    所述规则与监管子系统根据业务子系统上报的监控测量信息,调整资源调配服务所使用的资源调配规则,包括:
    所述规则与监管子系统根据其它业务子系统的无线接入资源使用情况,降低所述其它业务子系统中低负载业务子系统的无线接入资源分配比例,为所述第一业务子系统提高无线接入资源分配比例。
  24. 如权利要求22或23所述的方法,其特征在于,所述调整资源调配服务所使用的资源调配规则,是指:调整业务子系统的资源切片分配比例。
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