Service processing method and system for coaxial cable broadband access system
By receiving user service requests in the coaxial cable broadband access system and determining the target node, sending orchestration information to optimize the business process, the problem of difficulty in meeting user service needs is solved, and the indoor depth coverage of 5G network and effective control of edge networks is achieved.
Patent Information
- Application Number
- CN202211476050.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-23
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2042-11-23
AI Technical Summary
In the scenario of coaxial cable broadband access system, it is difficult to better meet the user's business needs based on the user's service requests, especially in the indoor deep coverage and edge network management of 5G networks.
By receiving service requests from user equipment, target service demand information is determined, and based on QoS guarantee demand information, target light load 5G core network nodes and target coaxial control unit nodes are determined. Then, the orchestration information is sent to the light-load 5G core network management unit and the coaxial management and control unit to achieve the optimization of business processes and the reasonable allocation of resources.
In the coaxial cable broadband access system, optimized processing based on user service requests is realized, the satisfaction of user service needs is improved, and the indoor depth coverage of 5G network and effective control of edge networks is ensured.
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Figure CN115866060B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of communications, and in particular to a service processing method and system for a coaxial cable broadband access system. Background Art
[0002] As an important part of the new infrastructure, China has further accelerated the construction of 5G networks, and is also accelerating the secondary development and application solutions based on 5G technology. With the continuous increase in the types of 5G services and the continuous expansion of industry boundaries, the deployment of indoor mobile networks has become increasingly important and has become one of the core competitiveness of operators in the 5G era. At the same time, with the introduction of 5G high frequency, traditional outdoor coverage indoor solutions face a series of challenges. After penetrating obstacles such as brick walls, glass and cement, outdoor signals can only provide shallow indoor coverage, and cannot guarantee the good experience required for indoor deep coverage. Therefore, the wired coaxial network has become an effective access channel for indoor coverage of home-level 5G small base stations, namely 5GoC (5G over Cable) technology. The use of HINOC (High performance Network Over Coax) technology based on the wired coaxial network can effectively solve the problem of 5G indoor deep coverage. The HINOC central office equipment (HINOCBridge, HB) is located at the top of the building or in the corridor, and is connected to the device carrying the UPF (User Plane Function) through an optical network; the HINOC terminal equipment (HINOC Modem, HM) forms a star network with the HB through the coaxial cable in the corridor, and is connected to the indoor 5G small base station through the Ethernet interface, effectively solving the problem of deep indoor coverage of the 5G network.
[0003] At the same time, in order to reduce the bandwidth and latency loss caused by network transmission and multi-level forwarding, some 5G key business applications are moved to the edge of the access network, that is, close to the user's access point. In view of the fact that 5G applications need to be moved to the edge of the network, the demand for edge network management and control is becoming increasingly urgent. In the 5GoC scenario, both the 5G access network and the coaxial network are involved. There are great differences in management and control between the two and they are not interoperable. Therefore, how to provide effective guarantees for end-to-end service quality and business experience for mobile users accessing indoors in this scenario needs to be solved urgently.
[0004] To address the above-mentioned problems, no effective solution has been proposed yet. Summary of the invention
[0005] The embodiments of the present invention provide a service processing method and system for a coaxial cable broadband access system, so as to at least solve the technical problem in the related art that it is difficult to better meet the service needs of users based on the service requests of users in the scenario of the coaxial cable broadband access system.
[0006] According to one aspect of an embodiment of the present invention, a service processing method of a coaxial cable broadband access system is provided, comprising: receiving a service request sent by a user device, wherein the service request is used to request execution of a target service, and the service request carries target service demand information; in response to the service request, determining QoS guarantee demand information corresponding to the target service demand information; determining a target light-load 5G core network node and a target coaxial control unit node through which the target service is executed based on a target access line of the user device, wherein the target light-load 5G core network node is a node controlled by a light-load 5G core network management unit, and the target coaxial control unit node is a node controlled by a coaxial control unit; determining first orchestration information corresponding to the target light-load 5G core network node and second orchestration information corresponding to the target coaxial control unit node based on the QoS guarantee demand information; sending the first orchestration information to the light-load 5G core network management unit, and sending the second orchestration information to the coaxial control unit.
[0007] Optionally, after determining the target light-load 5G core network node and target coaxial control unit node through which the target service is executed based on the target access line of the user equipment, the method further includes: receiving a switching instruction sent by the light-load 5G core network management unit, wherein the switching instruction carries the updated access line of the user equipment; determining the updated light-load 5G core network node and updated coaxial control unit node through which the target service is executed based on the updated access line.
[0008] Optionally, based on the QoS guarantee requirement information, determining the first orchestration information corresponding to the target light-loaded 5G core network node includes: sending a request for obtaining the resource status of the light-loaded 5G core network management unit to the light-loaded 5G core network management unit, wherein the request for obtaining the resource status of the light-loaded 5G core network management unit carries a predetermined device identifier, and the predetermined device identifier is the device identifier of the device corresponding to the target light-loaded 5G core network node; receiving the light-loaded 5G core network management unit resource status sent by the light-loaded 5G core network management unit; determining the first orchestration information corresponding to the target light-loaded 5G core network node based on the QoS guarantee requirement information and the coaxial control unit resource status.
[0009] Optionally, based on the QoS guarantee requirement information, determining the second orchestration information corresponding to the target coaxial control unit node includes: sending a request for obtaining the resource status of the coaxial control unit to the coaxial control unit, wherein the request for obtaining the resource status of the coaxial control unit carries a predetermined HINOC device identifier, and the predetermined HINOC device identifier is the device identifier of the device corresponding to the target coaxial control unit node; receiving the coaxial control unit resource status sent by the coaxial control unit; determining the second orchestration information corresponding to the target coaxial control unit node based on the QoS guarantee requirement information and the light-load 5G core network management unit resource status.
[0010] According to one aspect of an embodiment of the present invention, a service processing method for a coaxial cable broadband access system is provided, comprising: receiving first orchestration information sent by an edge network management and control platform, wherein the first orchestration information is orchestration information corresponding to a target light-loaded 5G core network node, the target light-loaded 5G core network node is determined based on a target access line of a user device, the first orchestration information is determined based on QoS guarantee requirement information, and the QoS guarantee requirement information is determined based on target service requirement information in a service request sent by the user device; determining predetermined device orchestration information based on user access information and the first orchestration information, wherein the predetermined device orchestration information is orchestration information of a device corresponding to the target light-loaded 5G core network node; and sending the predetermined device orchestration information to a predetermined device, wherein the predetermined device is a device corresponding to the target light-loaded 5G core network node.
[0011] Optionally, before receiving the first orchestration information sent by the edge network management and control platform, it also includes: receiving an authentication request sent by the user device, wherein the authentication request carries the user access information, and the user access information includes the target access line of the user device; in response to the authentication request, authenticating the user identity according to the user access information to obtain an authentication result; if the authentication result is authentication passed, sending the target access line of the user device to the edge network management and control platform.
[0012] According to one aspect of an embodiment of the present invention, a service processing method for a coaxial cable broadband access system is provided, comprising: receiving second orchestration information sent by an edge network control platform, wherein the second orchestration information is orchestration information corresponding to a target coaxial control unit node, the target coaxial control unit node is determined according to a target access line of a user device, the second orchestration information is determined according to QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to target service requirement information in a service request sent by the user device; determining coaxial control unit orchestration information according to available resource information of a predetermined HINOC device and the second orchestration information, wherein the available resource information of the predetermined HINOC device is available resource information of a device corresponding to the target coaxial control unit node, and the coaxial control unit orchestration information is orchestration information of a device corresponding to the target coaxial control unit node; and sending the coaxial control unit orchestration information to a predetermined HINOC device, wherein the predetermined HINOC device is a device corresponding to the target coaxial control unit node.
[0013] According to one aspect of an embodiment of the present invention, a coaxial cable broadband access system is provided, including: an edge network management and control platform, for receiving a service request sent by a user device, wherein the service request is used to request execution of a target service, and the service request carries target service demand information; in response to the service request, determining QoS guarantee demand information corresponding to the target service demand information; determining a target light-load 5G core network node and a target coaxial management and control unit node through which the target service is executed based on a target access line of the user device, wherein the target light-load 5G core network node is a node controlled by a light-load 5G core network management unit, and the target coaxial management and control unit node is a node controlled by a coaxial management and control unit; determining first orchestration information corresponding to the target light-load 5G core network node and second orchestration information corresponding to the target coaxial management and control unit node based on the QoS guarantee demand information; sending the first orchestration information to the light-load 5G core network management unit, and sending the second orchestration information to the coaxial management and control unit; light A 5G core network management unit for receiving the first orchestration information sent by the edge network control and management platform; determining the scheduled device orchestration information according to the user access information and the first orchestration information, wherein the scheduled device orchestration information is the orchestration information of the device corresponding to the target light-load 5G core network node; sending the scheduled device orchestration information to the scheduled device, wherein the scheduled device is the device corresponding to the target light-load 5G core network node; a coaxial control unit for receiving the second orchestration information sent by the edge network control and management platform; determining the coaxial control unit orchestration information according to the scheduled HINOC device available resource information and the second orchestration information, wherein the scheduled HINOC device available resource information is the available resource information of the device corresponding to the target coaxial control unit node, and the coaxial control unit orchestration information is the orchestration information of the device corresponding to the target coaxial control unit node; sending the coaxial control unit orchestration information to the scheduled HINOC device, wherein the scheduled HINOC device is the device corresponding to the target coaxial control unit node.
[0014] According to one aspect of an embodiment of the present invention, there is provided an electronic device, comprising: a processor; and a memory for storing instructions executable by the processor; wherein the processor is configured to execute the instructions to implement the service processing method of the coaxial cable broadband access system as described in any one of the above items.
[0015] According to one aspect of an embodiment of the present invention, a computer-readable storage medium is provided. When instructions in the computer-readable storage medium are executed by a processor of an electronic device, the electronic device can execute a service processing method for a coaxial cable broadband access system as described in any one of the above items.
[0016] In an embodiment of the present invention, a service request sent by a user device is received, wherein the service request is used to request execution of a target service, and the service request carries target service demand information. Then, in response to the service request, QoS guarantee demand information corresponding to the target service demand information is determined, and a target light-loaded 5G core network node and a target coaxial control unit node through which the target service is executed are determined based on a target access line of the user device, wherein the target light-loaded 5G core network node is a node controlled by a light-loaded 5G core network management unit, and the target coaxial control unit node is a node controlled by a coaxial control unit, that is, first orchestration information corresponding to the target light-loaded 5G core network node and second orchestration information corresponding to the target coaxial control unit node can be determined based on the QoS guarantee demand information, and then the first orchestration information is sent to the light-loaded 5G core network management unit so that the 5G core network management unit performs orchestration based on the first orchestration information, and the second orchestration information is sent to the coaxial control unit so that the coaxial control unit performs orchestration based on the second orchestration information. In the scenario of the coaxial cable broadband access system, the 5G core network management unit and the coaxial control unit are taken into consideration, and reasonable and effective orchestration is carried out, thereby solving the technical problem in the related technology that it is difficult to better meet the user's business needs based on the user's business requests in the scenario of the coaxial cable broadband access system. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0018] Figure 1 is a flow chart of a service processing method 1 of a coaxial cable broadband access system according to an embodiment of the present invention;
[0019] Figure 2 is a flow chart of a second service processing method of a coaxial cable broadband access system according to an embodiment of the present invention;
[0020] Figure 3 is a flow chart of a service processing method 3 of a coaxial cable broadband access system according to an embodiment of the present invention;
[0021] Figure 4 A schematic diagram of a 5G access control architecture based on a HINOC system provided for an optional implementation of the present invention;
[0022] Figure 5 A flowchart of 5G access control based on a HINOC system provided for an optional embodiment of the present invention;
[0023] Figure 6A flowchart of HINOC system resource query provided by an optional implementation mode of the present invention;
[0024] Figure 7 A flowchart of 5G access network resource query provided by an optional implementation manner of the present invention;
[0025] Figure 8 A flowchart of resource reconfiguration during UE switching provided by an optional embodiment of the present invention;
[0026] Fig. 9 It is a structural block diagram of a service processing system of a coaxial cable broadband access system according to an embodiment of the present invention. DETAILED DESCRIPTION
[0027] In order to enable those skilled in the art to better understand the scheme of the present invention, the technical scheme in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention.
[0028] It should be noted that the terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present invention described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units that are clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0029] First, some nouns or terms that appear in the description of the embodiments of the present application are subject to the following explanations:
[0030] AF (Application Function),
[0031] AMF (Access and Mobility Management Function),
[0032] RAN (Radio Access Network)
[0033] HINOC (High performance Network Over Coax, high performance coaxial cable broadband access),
[0034] HB (HINOC Bridge, HINOC local equipment),
[0035] HM (HINOC Modem, HINOC terminal equipment),
[0036] NEF (Network Exposure Function),
[0037] PCF (Policy Control Function),
[0038] SMF (Session Management Function),
[0039] UPF (User Plane Function),
[0040] UDM (Unified Data Management)
[0041] UE (User Equipment),
[0042] 3GPP (3rd Generation Partnership Project),
[0043] 5G (5th generation mobile networks or 5th generation wireless systems, 5th-Generation, the fifth generation of mobile communication technology),
[0044] UPF (User Plane Function): Mainly responsible for the execution of user plane policy rules, forwarding and routing service traffic by matching the flow filters provided by the 5G core network.
[0045] HB is usually installed at the top of the building and connected to the optical node upward to convert Ethernet signals into HINOC signals.
[0046] It should be noted that in Figure 4In the figure, N2, N4, N6 and Naf represent the codes of the existing interfaces respectively. These interfaces and related codes are commonly used in the current 5G technology and have been defined in the current standards. Those skilled in the art can understand their meanings based on the relevant information of the current 5G technology.
[0047] Example 1
[0048] According to an embodiment of the present invention, an embodiment of a service processing method for a coaxial cable broadband access system is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
[0049] Figure 1 : is a flow chart of a service processing method of a coaxial cable broadband access system according to an embodiment of the present invention. Figure 1 As shown, the method comprises the following steps:
[0050] Step S102, receiving a service request sent by a user equipment, wherein the service request is used to request execution of a target service, and the service request carries target service requirement information;
[0051] In step S102 recorded in the present application, this step can be implemented on the service orchestrator in the edge network management and control platform. By receiving the service request, the service in the local data network can be orchestrated according to the service requirements requested in the service request, so as to meet the user's service needs in the scenario of coaxial cable broadband access.
[0052] Step S104, in response to the service request, determining QoS guarantee requirement information corresponding to the target service requirement information;
[0053] In step S104 recorded in the present application, this step can be implemented on the service scheduler in the edge network management and control platform. By determining the QoS guarantee requirement information corresponding to the target service requirement information, it is possible to allocate bandwidth and other requirements under limited bandwidth and other resources to provide end-to-end service quality assurance for the service. For example, voice, video and important data applications can be given priority service in network equipment by configuring QoS. QoS metrics include: bandwidth, latency, jitter and packet loss rate. By determining the QoS guarantee requirement information, the smooth execution of the target service can be guaranteed.
[0054] Step S106, determining a target light-load 5G core network node and a target coaxial control unit node through which the target service is executed according to the target access line of the user equipment, wherein the target light-load 5G core network node is a node controlled by the light-load 5G core network management unit, and the target coaxial control unit node is a node controlled by the coaxial control unit;
[0055] In step S106 recorded in the present application, this step can be implemented on the policy orchestrator in the edge network control platform. Through the target access line of the user equipment, the target light-loaded 5G core network node and the target coaxial control unit node through which the target service is executed are determined, which can lay a good foundation for obtaining information such as the bandwidth allocated to each node in subsequent steps, so that the service execution is smoother and more successful.
[0056] Step S108, determining first orchestration information corresponding to the target lightly loaded 5G core network node and second orchestration information corresponding to the target coaxial control unit node according to the QoS guarantee requirement information;
[0057] In step S108 recorded in this application, this step can be implemented on the policy orchestrator in the edge network control platform, and the first orchestration information corresponding to the target light-load 5G core network node and the second orchestration information corresponding to the target coaxial control unit node are determined according to the QoS guarantee demand information, so that the bandwidth allocated to each node and other information can be arranged more carefully, so that the business execution is smoother and smoother. That is, the requirements in the big aspects are determined in step S104, and this step can determine the requirements in the small and more detailed aspects, so that the whole process can proceed more smoothly.
[0058] Step S110, sending the first orchestration information to the light-load 5G core network management unit, and sending the second orchestration information to the coaxial control unit.
[0059] In step S110 recorded in the present application, this step can be implemented on the policy orchestrator in the edge network control platform, and the orchestration information is sent to the 5G core network management unit and the coaxial control unit respectively, so that the 5G core network management unit and the coaxial control unit can make more detailed arrangements according to the orchestration information, determine the orchestration information of the equipment corresponding to the target light-load 5G core network node, and the orchestration information of the equipment corresponding to the target coaxial control unit node, and send it to the target light-load 5G core network node, and the target coaxial control unit node is configured so that the service can be executed quickly.
[0060] Through the above steps, for the edge network control platform, a service request sent by the user equipment is received, wherein the service request is used to request the execution of the target service, and the service request carries the target service demand information. Then, in response to the service request, the QoS guarantee demand information corresponding to the target service demand information is determined, and according to the target access line of the user equipment, the target light-loaded 5G core network node and the target coaxial control unit node through which the target service is executed are determined, wherein the target light-loaded 5G core network node is a node controlled by the light-loaded 5G core network management unit, and the target coaxial control unit node is a node controlled by the coaxial control unit, that is, the first orchestration information corresponding to the target light-loaded 5G core network node and the second orchestration information corresponding to the target coaxial control unit node can be determined according to the QoS guarantee demand information, and then the first orchestration information is sent to the light-loaded 5G core network management unit, so that the 5G core network management unit performs orchestration according to the first orchestration information, and the second orchestration information is sent to the coaxial control unit, so that the coaxial control unit performs orchestration according to the second orchestration information. In the scenario of the coaxial cable broadband access system, the 5G core network management unit and the coaxial control unit are taken into consideration, and reasonable and effective orchestration is carried out, thereby solving the technical problem in the related technology that it is difficult to better meet the user's business needs based on the user's business requests in the scenario of the coaxial cable broadband access system.
[0061] As an optional embodiment, after determining the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed based on the target access line of the user equipment, it also includes: receiving a switching instruction sent by the light-load 5G core network management unit, wherein the switching instruction carries the updated access line of the user equipment; determining the updated light-load 5G core network node and the updated coaxial control unit node through which the target service is executed based on the updated access line.
[0062] In this embodiment, a switching instruction sent by a light-load 5G core network management unit is received, that is, when the user's access location has changed, it is necessary to redetermine the nodes through which the target service needs to be executed, so that new orchestration can be performed based on the redetermined nodes, and based on the updated access lines, the updated light-load 5G core network nodes and updated coaxial control unit nodes through which the target service is executed are determined, and then the orchestration information corresponding to the nodes is determined and sent to the 5G core network management unit and the coaxial control unit to ensure the service quality during switching.
[0063] As an optional embodiment, determining the first orchestration information corresponding to the target light-loaded 5G core network node based on the QoS guarantee requirement information includes: sending a request for obtaining the resource status of the light-loaded 5G core network management unit to the light-loaded 5G core network management unit, wherein the request for obtaining the resource status of the light-loaded 5G core network management unit carries a predetermined device identifier, and the predetermined device identifier is the device identifier of the device corresponding to the target light-loaded 5G core network node; receiving the light-loaded 5G core network management unit resource status sent by the light-loaded 5G core network management unit; determining the first orchestration information corresponding to the target light-loaded 5G core network node based on the QoS guarantee requirement information and the coaxial control unit resource status.
[0064] In this embodiment, when the policy orchestrator of the edge network control platform starts orchestration, it will first determine the resource status of the light-loaded 5G core network management unit, so as to determine the first orchestration information corresponding to the target light-loaded 5G core network node according to the resource status of the light-loaded 5G core network management unit, so as to ensure smoother operation of the business and avoid unreasonable arrangements, in which more resources are still allocated to busier nodes, thereby causing jamming when executing the business due to node blocking.
[0065] As an optional embodiment, determining the second orchestration information corresponding to the target coaxial control unit node based on the QoS guarantee requirement information includes: sending a request for obtaining the resource status of the coaxial control unit to the coaxial control unit, wherein the request for obtaining the resource status of the coaxial control unit carries a predetermined HINOC device identifier, and the predetermined HINOC device identifier is the device identifier of the device corresponding to the target coaxial control unit node; receiving the coaxial control unit resource status sent by the coaxial control unit; determining the second orchestration information corresponding to the target coaxial control unit node based on the QoS guarantee requirement information and the light-load 5G core network management unit resource status.
[0066] In this embodiment, when the policy orchestrator of the edge network control platform starts orchestration, it will first determine the resource status of the coaxial control unit, so as to determine the second orchestration information corresponding to the target coaxial control unit node according to the resource status of the coaxial control unit, so as to ensure smoother operation of the business and avoid unreasonable arrangements, in which more resources are still allocated to busier nodes, thereby causing jamming when executing the business due to node blocking.
[0067] As an optional embodiment, before determining the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed based on the target access line of the user equipment, it also includes: receiving the target access line of the user equipment sent by the light-load 5G core network management unit.
[0068] In this embodiment, the target access line of the user equipment is determined to determine the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed based on the target access line of the user equipment.
[0069] Figure 2 is a flow chart of a second service processing method of a coaxial cable broadband access system according to an embodiment of the present invention. Figure 2 As shown, the method comprises the following steps:
[0070] Step S202, receiving first orchestration information sent by the edge network management and control platform, wherein the first orchestration information is orchestration information corresponding to a target light-load 5G core network node, the target light-load 5G core network node is determined according to a target access line of the user equipment, the first orchestration information is determined according to QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to target service requirement information in a service request sent by the user equipment;
[0071] In step S202 recorded in the present application, the first orchestration information sent by the edge network control platform is received, that is, the orchestration information related to the target light-loaded 5G core network node is received, so that the light-loaded 5G core network management unit can perform the orchestration of the target light-loaded 5G core network node according to the first orchestration information.
[0072] Step S204, determining the scheduled device scheduling information according to the user access information and the first scheduling information, wherein the scheduled device scheduling information is the scheduling information of the device corresponding to the target lightly loaded 5G core network node;
[0073] In step S204 recorded in this application, user access information refers to the user-related information that the light-load 5G core network management unit can obtain when the user accesses a node in the light-load 5G core network management unit. The scheduled device scheduling information refers to the scheduling information of the device corresponding to the target light-load 5G core network node. The device corresponding to the target light-load 5G core network node is the scheduled device mentioned in this application. The scheduled device can be a device that carries the user plane function or a small base station, etc. For example, the target light-load 5G core network node is the UPF1 node, which refers to the device No. 1 that carries the user plane function. It is not limited here and can be adaptively determined according to the actual application and scenario. By determining the scheduled device scheduling information, the needs can be implemented on each device, which is more specific, so that the smooth execution of the business is more guaranteed.
[0074] Step S206: Send the scheduled device scheduling information to the scheduled device, wherein the scheduled device is the device corresponding to the target lightly loaded 5G core network node.
[0075] In step S206 described in the present application, the scheduling configuration of the scheduled device can be achieved by sending the scheduled device scheduling information to the scheduled device.
[0076] Through the above steps, for the light-load 5G core network management unit side, the first orchestration information sent by the edge network control platform is received, wherein the first orchestration information is the orchestration information corresponding to the target light-load 5G core network node, the target light-load 5G core network node is determined according to the target access line of the user equipment, the first orchestration information is determined according to the QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to the target service requirement information in the service request sent by the user equipment; according to the user access information and the first orchestration information, the scheduled device orchestration information is determined; and the scheduled device orchestration information is sent to the scheduled device. In the scenario of the coaxial cable broadband access system, the light-load 5G core network management unit is taken into consideration, and reasonable and effective orchestration is performed, thereby solving the technical problem in the related technology that it is difficult to better meet the user's business needs based on the user's business request in the scenario of the coaxial cable broadband access system.
[0077] As an optional embodiment, before receiving the first orchestration information sent by the edge network management and control platform, it also includes: receiving an authentication request sent by a user device, wherein the authentication request carries user access information, and the user access information includes a target access line of the user device; in response to the authentication request, authenticating the user identity based on the user access information to obtain an authentication result; when the authentication result is authentication passed, sending the target access line of the user device to the edge network management and control platform.
[0078] In this embodiment, user access information can be obtained by authenticating the user, which includes the target access line of the user device used by the user. By determining this information, the edge network management and control platform can determine the target light-loaded 5G core network node and the target coaxial management and control unit node through which the target service is executed based on the target access line of the user device, thereby ensuring the smooth progress of the process.
[0079] Figure 3 1 is a flow chart of a service processing method 3 of a coaxial cable broadband access system according to an embodiment of the present invention. Figure 3 As shown, the method comprises the following steps:
[0080] Step S302, receiving second orchestration information sent by the edge network control platform, wherein the second orchestration information is orchestration information corresponding to the target coaxial control unit node, the target coaxial control unit node is determined according to the target access line of the user equipment, the second orchestration information is determined according to the QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to the target service requirement information in the service request sent by the user equipment;
[0081] In step S302 recorded in the present application, the second orchestration information sent by the edge network control platform is received, that is, the orchestration information related to the target coaxial control unit node is received, so that the coaxial control unit can perform the orchestration of the target coaxial control unit node according to the second orchestration information.
[0082] Step S304, determining the coaxial control unit arrangement information according to the predetermined HINOC device available resource information and the second arrangement information, wherein the predetermined HINOC device available resource information is the available resource information of the device corresponding to the target coaxial control unit node, and the coaxial control unit arrangement information is the arrangement information of the device corresponding to the target coaxial control unit node;
[0083] In step S304 described in this application, the coaxial control unit arrangement information is the arrangement information of the device corresponding to the target coaxial control unit node, which can be a HINOC central office device, a HINOC terminal device, etc., which is not limited here and can be adaptively determined according to actual applications and scenarios. By determining the coaxial control unit arrangement information, the requirements can be implemented on each device, which is more specific, so that the smooth execution of the business is more guaranteed.
[0084] Step S306: sending the coaxial control unit arrangement information to a predetermined HINOC device, wherein the predetermined HINOC device is a device corresponding to the target coaxial control unit node.
[0085] In step S306 recorded in the present application, the coaxial control unit scheduling information can be sent to a predetermined HINOC device. For example, the coaxial control unit scheduling information can be sent to the corresponding HINOC central office device. In the case of scheduling of HINOC terminal devices, since the HINOC terminal devices are controlled by the HINOC central office device, the coaxial control unit scheduling information is sent to the HINOC central office device. The HINOC central office device will send the scheduling information of the HINOC terminal device to the HINOC terminal device to implement the scheduling configuration of the corresponding device.
[0086] Through the above steps, for the coaxial control unit side, the second orchestration information sent by the edge network control platform is received, wherein the second orchestration information is the orchestration information corresponding to the target coaxial control unit node, the target coaxial control unit node is determined according to the target access line of the user equipment, the second orchestration information is determined according to the QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to the target service requirement information in the service request sent by the user equipment; the coaxial control unit orchestration information is determined according to the available resource information of the predetermined HINOC device and the second orchestration information; the coaxial control unit orchestration information is sent to the predetermined HINOC device. In the scenario of the coaxial cable broadband access system, the coaxial control unit is taken into consideration, and reasonable and effective orchestration is performed, thereby solving the technical problem in the related technology that it is difficult to better meet the user's business needs based on the user's business request in the scenario of the coaxial cable broadband access system.
[0087] Based on the above embodiments and optional embodiments, an optional implementation is provided, which is described in detail below.
[0088] For related technologies, since 5G access and wired coaxial access are involved at the same time, it is necessary to comprehensively consider access network resources and manage them in combination with user business needs. Related technologies have not yet comprehensively considered these issues, which also leads to the inability to effectively guarantee the business needs of mobile users in this scenario.
[0089] In view of this, an optional implementation of the present invention provides a 5G access method based on the HINOC system, and a service processing method of the same coaxial cable broadband access system, which can solve the service needs of mobile users in this scenario, connect the light-load 5G core network and the coaxial control unit through service orchestration and policy orchestration, and realize 5G access control based on the HINOC system. The market competitiveness of home network services will be greatly improved through coaxial / 5G integration. The optional implementation of the present invention is introduced below.
[0090] First of all, it should be noted that the present invention provides a service processing method for a coaxial cable broadband access system, which is applied to the 5G access architecture of the HINOC system. Figure 4 A schematic diagram of a 5G access control architecture based on a HINOC system is provided for an optional embodiment of the present invention, such as Figure 4 As shown, the architecture is introduced:
[0091] The architecture includes the following components:
[0092] Edge network management and control platform: This component is located at the edge network and includes a service orchestrator and a policy orchestrator. It is connected to the light-load 5G core network management unit and is mainly responsible for the refined policy control and service quality assurance of indoor 5G services based on 5G access of the HINOC system. It obtains user access information (such as user access data, user contract data, etc.) from the light-load 5G core network management unit; it is connected to the coaxial management and control unit through the newly defined interface Nh to obtain HINOC equipment related information (such as available resources, equipment status, etc.).
[0093] It should be noted that when the edge network control platform is executed, the service orchestrator orchestrates the services in the local data network according to the service requirements requested by the user; then it generates the QoS protection requirements required by the service, and sends the QoS protection requirements required by the service to the policy orchestrator for policy orchestration. The policy orchestration includes two parts: (1) the policy orchestration of the UPF or small base station controlled by the light-load 5G core network; (2) the policy orchestration of the HINOC system controlled by the coaxial control unit; after the policy orchestrator completes the policy orchestration, it sends the QoS policy requirements to the light-load 5G core network and the coaxial control unit respectively; among them, the light-load 5G core network formulates corresponding policy rules according to QoS policy requirements, user contract data, user access information, etc., and then sends them to the UPF or small base station for execution; the coaxial control unit generates a configuration file according to QoS policy requirements, HB available resources, etc., and then sends it to the HB for execution.
[0094] Light-load 5G core network management unit: It can be called a light-load 5G core network. This component is sunk to the edge network and deployed together with the edge network management and control platform. It can also be connected to multiple edge network management and control platforms. It provides the basic functions of the 5G core network defined by the 3GPP standard, including AMF, SMF, PCF, NEF, UDM and other functional units.
[0095] Coaxial control unit: responsible for the policy configuration and update of the HINOC system. Specifically, after HB goes online, it requests the configuration file from the coaxial control unit, and the background network system issues it after authorization and authentication. Furthermore, after HM goes online, HB issues the configuration file after authorization check.
[0096] It should be noted that in this architecture, an edge network control platform is added, and a new interaction interface Nh is added between the newly added coaxial control unit, and the 5G core network and the local data network are interacted through the existing interface. The architecture proposed in the present invention and the process control method based on this architecture can achieve end-to-end policy control guarantee for the service quality and business experience of specific users.
[0097] With the support of the above architecture, a control method for the 5G access architecture based on the HINOC system was determined. The general process of executing this method is as follows:
[0098] S1: The user equipment initiates a service request to the edge network management and control platform (same as the service request sent by the user equipment above, wherein the service request is used to request execution of the target service, and the service request carries the target service requirement information);
[0099] S2: The service orchestrator in the edge network management and control platform orchestrates services in the local data network according to the service requirements requested by the user;
[0100] S3: The service orchestrator sends the QoS guarantee requirements of the orchestrated service (the same as the QoS guarantee requirement information corresponding to the target service requirement information) to the policy orchestrator, and initiates a policy orchestration request;
[0101] S4: The policy orchestrator performs policy orchestration according to the QoS guarantee requirements. The policy orchestrator determines the nodes (such as HB1, UPF2) through which the service traffic will pass (the same as the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed) according to the user access location (the same as the target access line of the user equipment mentioned above), and performs policy orchestration for the nodes involved according to the QoS guarantee requirements;
[0102] Specifically, policy orchestration consists of two parts:
[0103] (1) The light-load 5G core network controls the strategy arrangement of the UPF or small base station (the same as the first arrangement information corresponding to the target light-load 5G core network node mentioned above);
[0104] (2) The coaxial control unit controls the policy orchestration of the HINOC system (the same as the second orchestration information corresponding to the target coaxial control unit node);
[0105] S6: The policy orchestrator sends the orchestrated QoS policy requirements to the light-load 5G core network and the coaxial control unit respectively (same as sending the first orchestration information to the light-load 5G core network management unit and sending the second orchestration information to the coaxial control unit);
[0106] S7a: The light-load 5G core network formulates corresponding policy rules according to QoS policy requirements, user contract data, user access information, etc., and then sends them to the UPF or small base station for execution (same as the above-mentioned receiving the first orchestration information sent by the edge network control platform, determining the scheduled device orchestration information based on the user access information and the first orchestration information, and sending the scheduled device orchestration information to the scheduled device);
[0107] S7b: The coaxial control unit generates configuration rules according to QoS policy requirements, HB available resources, etc., and then sends them to HB for execution (same as the above-mentioned receiving the second orchestration information sent by the edge network control platform, determining the coaxial control unit orchestration information according to the available resource information of the predetermined HINOC device and the second orchestration information, and sending the coaxial control unit orchestration information to the predetermined HINOC device).
[0108] It should be noted that before executing this method, the UE needs to access the wireless network from the indoor small base station, and the light-load 5G core network needs to perform access authentication on it, and send user-related information such as user access information to the edge network management and control platform (the same as the above-mentioned receiving the authentication request sent by the user device, wherein the authentication request carries user access information, and the user access information includes the target access line of the user device; in response to the authentication request, the user identity is authenticated according to the user access information to obtain an authentication result; when the authentication result is that the authentication is passed, the target access line of the user device is sent to the edge network management and control platform).
[0109] Figure 5 A flowchart of 5G access control based on the HINOC system is provided for an optional embodiment of the present invention, such as Figure 5 As shown, the detailed process of the control method of the 5G access architecture based on the HINOC system is introduced below:
[0110] S1: UE initiates a service request to AF;
[0111] S2: service orchestration request;
[0112] The service orchestrator in the edge network management and control platform orchestrates services in the local data network according to the service requirements requested by the user;
[0113] S3: Policy orchestration request;
[0114] The service orchestrator sends the QoS guarantee requirements of the orchestrated service to the policy orchestrator and initiates a policy orchestration request.
[0115] S4: QoS strategy requirements for light-load 5G core networks;
[0116] S4a: 5G access network QoS policy requirements;
[0117] The policy orchestrator sends the orchestrated 5G access network QoS policy requirements to the lightly loaded 5G core network;
[0118] S5a: 5g access network QoS policy rules;
[0119] PCF formulates corresponding QoS policy rules based on QoS policy requirements, user contract data, user access location, etc.
[0120] S6a: User plane configuration;
[0121] PCF sends the QoS policy rules to SMF, which sends them to the corresponding UPF or small base station for execution to complete the user plane configuration;
[0122] S7a: SMF replies a response message to PCF;
[0123] S8a: PCF replies a response message to the policy orchestrator;
[0124] S4: QoS policy requirements for coaxial control units;
[0125] S4b: QoS policy requirements for HINOC systems;
[0126] The policy orchestrator sends the orchestrated HINOC system QoS policy requirements to the coaxial control unit;
[0127] S5b: Send configuration file;
[0128] The coaxial control unit sends the configuration file to the corresponding HB, and further, the HB sends the configuration file to the HM; the HB and HM execute the configuration file;
[0129] S6b: The coaxial control unit replies a response message to the policy orchestrator;
[0130] S5: The policy choreographer replies a response message to the service choreographer;
[0131] S6: The service orchestrator sends a response message to the AF.
[0132] At this point, the UE accesses the service, and the service quality of the service is guaranteed to meet the user's service experience.
[0133] It should be noted that, in the process of the optional implementation mode of the present invention, a process of querying HINOC system resources is also included. By querying HINOC system resources, the corresponding arrangement information can be better determined. Figure 6 A flowchart of HINOC system resource query provided by an optional implementation mode of the present invention is as follows: Figure 6 As shown, the process generally includes:
[0134] S1: The policy orchestrator queries the coaxial control unit for the resource status of the HINOC system, such as the current available resources of the HB, the operating status of the equipment, etc.; the query message may include the HB identifier (such as the IP address or MAC address of the HB);
[0135] S2: The coaxial control unit replies to the policy orchestrator with the current resource status information of the queried HB.
[0136] It should be noted that, in the process of the optional implementation mode of the present invention, a process of querying 5G access network resources is also included. By querying the process of 5G access network resources, the corresponding scheduling information can be better determined. Figure 7 A flowchart of 5G access network resource query provided by an optional implementation manner of the present invention, such as Figure 7 As shown, the process generally includes:
[0137] S1: The policy orchestrator queries the light-load 5G core network for the resource status of the 5G access network, such as UPF available bandwidth, small base station resource utilization rate, etc. The query message may include a UPF identifier (such as the IP address of the UPF), a small base station identifier, etc.
[0138] S2: The lightly loaded 5G core network replies to the policy orchestrator with the current resource status information of the queried UPF or small base station.
[0139] It should be noted that, in the process of the optional implementation mode of the present invention, a process of resource reconfiguration during UE switching is also included, which can ensure the smooth execution of the service during switching. Figure 8 A flowchart of resource reconfiguration during UE switching provided by an optional embodiment of the present invention, such as Figure 8 As shown, the process generally includes:
[0140] S1: The light-load 5G core network sends a handover notification to the policy orchestrator, which includes the new user access location information after the handover (this embodiment assumes that the UPF and HB remain unchanged after the UE is switched, but the HM changes);
[0141] S2: The policy composer determines the new node (such as HM2) that the service traffic will pass through according to the user access location, and composes policies for the nodes involved according to the QoS guarantee requirements; the policy composer sends the choreographed HINOC system QoS policy requirements to the coaxial control unit;
[0142] S3: The coaxial control unit sends the configuration file to the corresponding HB;
[0143] S4a): HB sends a configuration file to HM1 to release the resources occupied by UE;
[0144] S4b): HB sends a configuration file to HM2 to reallocate resources for the UE;
[0145] S5: HB replies a response message to the coaxial control unit;
[0146] S6: The coaxial control unit replies a response message to the policy orchestrator;
[0147] S7: The policy orchestrator replies a response message to the lightly loaded 5G core network.
[0148] Through the above-mentioned optional implementation mode, the beneficial effect of reasonable and effective orchestration taking into account the 5G core network management unit and the coaxial control unit can be achieved in the scenario of the coaxial cable broadband access system, thereby solving the technical problem in the related technology that it is difficult to better meet the user's business needs based on the user's business request in the scenario of the coaxial cable broadband access system.
[0149] It should be noted that, for the above-mentioned method embodiments, for the sake of simplicity, they are all described as a series of action combinations, but those skilled in the art should know that the present invention is not limited by the described action sequence, because according to the present invention, certain steps can be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily required by the present invention.
[0150] Through the description of the above implementation methods, those skilled in the art can clearly understand that the method according to the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is a better implementation method. Based on such an understanding, the technical solution of the present invention is essentially or the part that contributes to the prior art can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, a magnetic disk, or an optical disk), and includes a number of instructions for a terminal device (which can be a mobile phone, a computer, a server, or a network device, etc.) to execute the methods of various embodiments of the present invention.
[0151] Example 2
[0152] According to an embodiment of the present invention, a system for implementing the service processing method of the coaxial cable broadband access system is also provided. Fig. 9 is a structural block diagram of a service processing system of a coaxial cable broadband access system according to an embodiment of the present invention. Fig. 9 As shown, the system includes: an edge network management and control platform 902, a light-load 5G core network management unit 904 and a coaxial management and control unit 906. The system is described in detail below.
[0153] The edge network management and control platform 902 is used to receive a service request sent by a user device, wherein the service request is used to request the execution of a target service, and the service request carries target service demand information; in response to the service request, determine the QoS guarantee demand information corresponding to the target service demand information; determine the target light-load 5G core network node and the target coaxial management and control unit node through which the target service is executed according to the target access line of the user device, wherein the target light-load 5G core network node is a node controlled by the light-load 5G core network management unit, and the target coaxial management and control unit node is a node controlled by the coaxial management and control unit; determine the first orchestration information corresponding to the target light-load 5G core network node and the second orchestration information corresponding to the target coaxial management and control unit node according to the QoS guarantee demand information; send the first orchestration information to the light-load 5G core network management unit, and send the second orchestration information to the coaxial management unit; the light-load 5G core network management unit 904 is connected to the above-mentioned edge network management and control platform 902, and is used The method comprises: receiving first orchestration information sent by the edge network control platform; determining the scheduled device orchestration information based on the user access information and the first orchestration information, wherein the scheduled device orchestration information is the orchestration information of the device corresponding to the target light-load 5G core network node; sending the scheduled device orchestration information to the scheduled device, wherein the scheduled device is the device corresponding to the target light-load 5G core network node; the coaxial control unit 906 is connected to the above-mentioned edge network control platform 902, and is used to receive the second orchestration information sent by the edge network control platform; determining the coaxial control unit orchestration information based on the scheduled HINOC device available resource information and the second orchestration information, wherein the scheduled HINOC device available resource information is the available resource information of the device corresponding to the target coaxial control unit node, and the coaxial control unit orchestration information is the orchestration information of the device corresponding to the target coaxial control unit node; sending the coaxial control unit orchestration information to the scheduled HINOC device, wherein the scheduled HINOC device is the device corresponding to the target coaxial control unit node.
[0154] It should be noted here that the above-mentioned edge network management and control platform 902, light-load 5G core network management unit 904 and coaxial management and control unit 906 correspond to the above-mentioned steps in the business processing method for implementing the coaxial cable broadband access system, and the instances and application scenarios implemented by multiple modules are the same as those of the corresponding steps, but are not limited to the contents disclosed in the above-mentioned Example 1.
[0155] Example 3
[0156] According to another aspect of an embodiment of the present invention, there is also provided an electronic device, comprising: a processor; and a memory for storing instructions executable by the processor, wherein the processor is configured to execute instructions to implement any of the above-mentioned service processing methods for a coaxial cable broadband access system.
[0157] Example 4
[0158] According to another aspect of an embodiment of the present invention, a computer-readable storage medium is provided. When instructions in the computer-readable storage medium are executed by a processor of an electronic device, the electronic device can execute any of the above-mentioned service processing methods for a coaxial cable broadband access system.
[0159] The serial numbers of the above embodiments of the present invention are only for description and do not represent the advantages or disadvantages of the embodiments.
[0160] In the above embodiments of the present invention, the description of each embodiment has its own emphasis. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0161] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. Among them, the device embodiments described above are only schematic. For example, the division of the units can be a logical function division. There may be other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of units or modules, which can be electrical or other forms.
[0162] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple units. Some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0163] In addition, each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.
[0164] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk and other media that can store program codes.
[0165] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A service processing method for a coaxial cable broadband access system, characterized in that: include: Receiving a service request sent by a user equipment, wherein the service request is used to request execution of a target service and the service request carries target service requirement information; In response to the service request, determining quality of service (QoS) guarantee requirement information corresponding to the target service requirement information; According to the target access line of the user equipment, determine the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed, wherein the target light-load 5G core network node is a node controlled by the light-load 5G core network management unit, and the target coaxial control unit node is a node controlled by the coaxial control unit; Determine, according to the QoS guarantee requirement information, first orchestration information corresponding to the target lightly loaded 5G core network node and second orchestration information corresponding to the target coaxial control unit node; The first orchestration information is sent to the light-load 5G core network management unit, and the second orchestration information is sent to the coaxial control unit, so that the light-load 5G core network management unit determines the predetermined device orchestration information based on the first orchestration information and the user access information, and the coaxial control unit determines the coaxial control unit orchestration information based on the second orchestration information and the predetermined coaxial cable broadband access HINOC device available resource information, the predetermined device orchestration information is the orchestration information of the device corresponding to the target light-load 5G core network node, and the coaxial control unit orchestration information is the orchestration information of the device corresponding to the target coaxial control unit node.
2. The method according to claim 1, characterized in that After determining the target light-load 5G core network node and the target coaxial control unit node through which the target service is executed according to the target access line of the user equipment, the method further includes: Receiving a handover instruction sent by the lightly loaded 5G core network management unit, wherein the handover instruction carries an updated access line of the user equipment; Based on the updated access line, determine the updated light-load 5G core network node and the updated coaxial control unit node through which the target service is executed.
3. The method according to claim 1, characterized in that Determining, according to the QoS guarantee requirement information, first orchestration information corresponding to the target lightly loaded 5G core network node, including: Sending a request for obtaining the resource status of a light-load 5G core network management unit to the light-load 5G core network management unit, wherein the request for obtaining the resource status of the light-load 5G core network management unit carries a predetermined device identifier, and the predetermined device identifier is a device identifier of a device corresponding to the target light-load 5G core network node; Receiving a resource status of a light-load 5G core network management unit sent by the light-load 5G core network management unit; Determine the first orchestration information corresponding to the target light-loaded 5G core network node based on the QoS guarantee requirement information and the resource status of the coaxial control unit.
4. The method according to claim 1 or 3, characterized in that Determining, according to the QoS guarantee requirement information, second orchestration information corresponding to the target coaxial control unit node, including: Sending a request for obtaining the resource status of a coaxial control unit to the coaxial control unit, wherein the request for obtaining the resource status of the coaxial control unit carries a predetermined coaxial cable broadband access HINOC device identifier, and the predetermined HINOC device identifier is a device identifier of a device corresponding to the target coaxial control unit node; Receiving a coaxial control unit resource status sent by the coaxial control unit; Based on the QoS guarantee requirement information and the resource status of the light-load 5G core network management unit, determine the second orchestration information corresponding to the target coaxial control unit node.
5. A service processing method for a coaxial cable broadband access system, characterized in that: include: Receive first orchestration information sent by the edge network management and control platform, wherein the first orchestration information is orchestration information corresponding to a target light-load 5G core network node, the target light-load 5G core network node is determined according to a target access line of a user equipment, the first orchestration information is determined according to QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to target service requirement information in a service request sent by the user equipment; Determine the scheduled device scheduling information according to the user access information and the first scheduling information, wherein the scheduled device scheduling information is the scheduling information of the device corresponding to the target light-load 5G core network node; The scheduled device scheduling information is sent to the scheduled device, wherein the scheduled device is a device corresponding to the target lightly loaded 5G core network node.
6. The method according to claim 5, characterized in that Before receiving the first orchestration information sent by the edge network management and control platform, the method further includes: receiving an authentication request sent by the user equipment, wherein the authentication request carries the user access information, and the user access information includes the target access line of the user equipment; In response to the authentication request, authenticating the user identity according to the user access information to obtain an authentication result; When the authentication result is authentication passed, the target access line of the user equipment is sent to the edge network management and control platform.
7. A service processing method for a coaxial cable broadband access system, characterized in that: include: Receive second orchestration information sent by the edge network control platform, wherein the second orchestration information is orchestration information corresponding to a target coaxial control unit node, the target coaxial control unit node is determined according to a target access line of a user equipment, the second orchestration information is determined according to QoS guarantee requirement information, and the QoS guarantee requirement information is determined according to target service requirement information in a service request sent by the user equipment; Determine the coaxial control unit arrangement information according to the predetermined HINOC device available resource information and the second arrangement information, wherein the predetermined HINOC device available resource information is the available resource information of the device corresponding to the target coaxial control unit node, and the coaxial control unit arrangement information is the arrangement information of the device corresponding to the target coaxial control unit node; The coaxial control unit scheduling information is sent to a predetermined coaxial cable broadband access HINOC device, wherein the predetermined HINOC device is a device corresponding to the target coaxial control unit node.
8. A coaxial cable broadband access system, characterized in that: include: An edge network management and control platform is used to receive a service request sent by a user device, wherein the service request is used to request the execution of a target service, and the service request carries target service demand information; in response to the service request, determine the QoS guarantee demand information corresponding to the target service demand information; determine, based on the target access line of the user device, a target light-loaded 5G core network node and a target coaxial management and control unit node through which the target service is executed, wherein the target light-loaded 5G core network node is a node controlled by a light-loaded 5G core network management unit, and the target coaxial management and control unit node is a node controlled by a coaxial management and control unit; based on the QoS guarantee demand information, determine first orchestration information corresponding to the target light-loaded 5G core network node, and second orchestration information corresponding to the target coaxial management and control unit node; send the first orchestration information to the light-loaded 5G core network management unit, and send the second orchestration information to the coaxial management and control unit; The light-load 5G core network management unit is configured to receive the first orchestration information sent by the edge network control platform; determine the scheduled device orchestration information according to the user access information and the first orchestration information, wherein the scheduled device orchestration information is the orchestration information of the device corresponding to the target light-load 5G core network node; send the scheduled device orchestration information to the scheduled device, wherein the scheduled device is the device corresponding to the target light-load 5G core network node; The coaxial control unit is used to receive the second orchestration information sent by the edge network control platform; determine the coaxial control unit orchestration information according to the predetermined HINOC device available resource information and the second orchestration information, wherein the predetermined HINOC device available resource information is the available resource information of the device corresponding to the target coaxial control unit node, and the coaxial control unit orchestration information is the orchestration information of the device corresponding to the target coaxial control unit node; send the coaxial control unit orchestration information to the predetermined HINOC device, wherein the predetermined HINOC device is the device corresponding to the target coaxial control unit node.
9. An electronic device, characterized in that: include: processor; a memory for storing instructions executable by the processor; The processor is configured to execute the instructions to implement the service processing method of the coaxial cable broadband access system as described in any one of claims 1 to 7.
10. A computer-readable storage medium, characterized in that: When the instructions in the computer-readable storage medium are executed by a processor of an electronic device, the electronic device is enabled to execute the service processing method for a coaxial cable broadband access system according to any one of claims 1 to 7.
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