Method for managing Qos (Quality of Service) of computing power tasks in 6G mobile network
By establishing task indicators and network indicator mapping tables in the 6G mobile network and establishing dedicated QoS bearers for computing tasks within the core network, the defects of computing power task QoS management in the 6G mobile network are solved, and efficient and reliable data transmission is achieved.
Patent Information
- Application Number
- CN202510091798.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-05-06
AI Technical Summary
The lack of clear standards and guidance on the quality of service (QoS) management of computing power tasks in 6G mobile networks, resulting in the inability to effectively manage the service quality of computing power tasks in mobile networks.
By establishing task indicators and network indicator mapping tables, task indicators (such as task type, time, and accuracy) are converted into network indicators (such as delay, packet loss rate, priority), a dedicated QoS bearer for computing tasks is established within the core network, and the data of the computing task is transmitted through dedicated QoS bearer.
It realizes the rational and secure transmission of computing tasks data in 6G mobile network, solves the shortcomings of computing power task QoS management, and improves the efficiency and reliability of data transmission.
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Figure CN119946734A_ABST
Abstract
Description
Technical Field
[0001] The present invention discloses a method for managing the QoS of computing tasks in a 6G mobile network, and relates to the technical field of mobile network management. Background Art
[0002] Currently, the integration of computing and network technology is a major research direction in the 6G mobile network standard. However, there are no clear standards or guidance on how the mobile core network manages the service quality of computing tasks. Summary of the invention
[0003] In view of the problems of the prior art, the present invention provides a QoS management method for computing power tasks in a 6G mobile network, which solves the problem of managing service quality of computing power tasks in a mobile network through a business and network indicator mapping table.
[0004] The specific scheme proposed by the present invention is:
[0005] The present invention provides a method for managing the QoS of computing tasks in a 6G mobile network, comprising:
[0006] Step 1: After the terminal is connected to the mobile network, a computing task is initiated through the default bearer established by the core network. A request is initiated based on the computing task, and task indicators are obtained based on the request.
[0007] Step 2: Create a mapping table between task indicators and network indicators, and convert the task indicators into corresponding network indicators.
[0008] Step 3: Notify PCF through the core network N5 interface and establish a dedicated QoS bearer for computing tasks in the core network.
[0009] Step 4: Transmit the data of subsequent computing tasks through a dedicated QoS bearer.
[0010] Furthermore, step 2 of the method for managing QoS of computing tasks in a 6G mobile network includes: establishing a mapping table of task indicators and network indicators, and converting the task type, task duration, and task accuracy in the task indicators into corresponding network indicators through the mapping table of task indicators and network indicators. The network indicators include network parameters such as delay, packet loss rate, and priority.
[0011] Furthermore, step 4 of the method for managing QoS of computing tasks in a 6G mobile network includes: transmitting data of subsequent computing tasks according to the policy parameters of the core network through a dedicated QoS bearer, and the policy parameters include access control parameters, session control parameters, authentication control parameters and policy control parameters.
[0012] Furthermore, step 4 of the method for managing QoS of computing tasks in a 6G mobile network includes: dividing computing tasks into different priorities according to their importance and urgency, and giving priority to high-priority tasks through dedicated QoS bearers.
[0013] The present invention also provides a QoS management device for computing task in a 6G mobile network, including a task management module, a conversion module, a QoS bearer management module and a transmission module.
[0014] After the task management module connects the terminal to the mobile network, it initiates the computing task through the default bearer established by the core network, initiates a request based on the computing task, and obtains the task indicators based on the request.
[0015] The conversion module establishes a mapping table between task indicators and network indicators, and converts the task indicators into corresponding network indicators.
[0016] The QoS bearer management module notifies the PCF through the core network N5 interface to establish a dedicated QoS bearer for computing tasks in the core network.
[0017] The transmission module transmits the data of subsequent computing tasks through a dedicated QoS bearer.
[0018] Furthermore, a conversion module of a computing task QoS management device in a 6G mobile network establishes a mapping table of task indicators and network indicators, and converts the task type, task duration, and task accuracy in the task indicators into corresponding network indicators through the mapping table of task indicators and network indicators. The network indicators include network parameter delay, packet loss rate, and priority.
[0019] Furthermore, the transmission module of the computing task QoS management device in the 6G mobile network transmits the data of subsequent computing tasks through a dedicated QoS bearer according to the policy parameters of the core network. The policy parameters include access control parameters, session control parameters, authentication control parameters and policy control parameters.
[0020] Furthermore, the transmission module of the computing task QoS management device in the 6G mobile network divides the computing tasks into different priorities according to the importance and urgency of the computing tasks, and gives priority to high-priority tasks through dedicated QoS bearer.
[0021] The present invention also provides a computer-readable medium, on which computer instructions are stored. When the computer instructions are executed by a processor, the processor executes the method for managing QoS of computing power tasks in a 6G mobile network.
[0022] The benefits of the present invention are:
[0023] The present invention initiates a request according to a computing task, obtains task indicators according to the request, establishes a mapping table of task indicators and network indicators, converts the task indicators into corresponding network indicators, establishes a dedicated QoS bearer for computing tasks in the core network, and transmits data of subsequent computing tasks through the dedicated QoS bearer. The present invention uses a dedicated QoS bearer to transmit the data of computing tasks, which can transmit data more reasonably and safely, and also solves the defect that there is no QoS management for computing tasks in 6G mobile networks. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the application process of the method of the present invention. DETAILED DESCRIPTION
[0025] The present invention is further described below in conjunction with the accompanying drawings and specific embodiments so that those skilled in the art can better understand the present invention and implement it, but the embodiments are not intended to limit the present invention.
[0026] Example 1
[0027] The present invention provides a method for managing the QoS of computing tasks in a 6G mobile network, comprising:
[0028] Step 1: After the terminal is connected to the mobile network, a computing task is initiated through the default bearer established by the core network, a request is initiated based on the computing task, and task indicators are obtained based on the request.
[0029] Step 2: Create a mapping table between task indicators and network indicators, and convert the task indicators into corresponding network indicators.
[0030] After establishing the task indicator and network indicator mapping table, the task type, task time, task accuracy, etc. in the task indicators are converted into corresponding network indicators through the task indicator and network indicator mapping table. The network indicators include network parameter delay, packet loss rate, priority, etc.
[0031] Step 3: Notify PCF through the core network N5 interface and establish a dedicated QoS bearer for computing tasks in the core network.
[0032] Step 4: Transmit the data of subsequent computing tasks through a dedicated QoS bearer.
[0033] The data of subsequent computing tasks are transmitted through a dedicated QoS bearer according to the policy parameters of the core network. The policy parameters include access control parameters, session control parameters, authentication control parameters and policy control parameters.
[0034] In step 4, the computing tasks are divided into different priorities according to their importance and urgency. High-priority tasks are processed preferentially through dedicated QoS bearers.
[0035] Example 2
[0036] The present invention also provides a QoS management device for computing task in a 6G mobile network, including a task management module, a conversion module, a QoS bearer management module and a transmission module.
[0037] After the task management module connects the terminal to the mobile network, it initiates the computing task through the default bearer established by the core network, initiates a request based on the computing task, and obtains the task indicators based on the request.
[0038] The conversion module establishes a mapping table between task indicators and network indicators, and converts the task indicators into corresponding network indicators.
[0039] The QoS bearer management module notifies the PCF through the core network N5 interface to establish a dedicated QoS bearer for computing tasks in the core network.
[0040] The transmission module transmits the data of subsequent computing tasks through a dedicated QoS bearer.
[0041] Example 3
[0042] The present invention also provides a computer-readable medium, on which computer instructions are stored. When the computer instructions are executed by a processor, the processor executes the method for managing QoS of computing power tasks in a 6G mobile network.
[0043] Specifically, a system or device equipped with a storage medium can be provided, on which software program code that implements the functions of any of the above-mentioned embodiments is stored, and a computer (or CPU or MPU) of the system or device can read and execute the program code stored in the storage medium.
[0044] In this case, the program code itself read from the storage medium can realize the function of any one of the above-mentioned embodiments, and thus the program code and the storage medium storing the program code constitute a part of the present invention.
[0045] The storage medium embodiments for providing the program code include a floppy disk, a hard disk, a magneto-optical disk, an optical disk (such as CD-ROM, CD-R, CD-RW, DVD-ROM, DVD-RAM, DVD-RW, DVD+RW), a magnetic tape, a non-volatile memory card, and a ROM. Alternatively, the program code can be downloaded from a server computer by a communication network.
[0046] In addition, it should be clear that the functions of any of the above embodiments can be implemented not only by executing the program code read by the computer, but also by enabling an operating system operating on the computer to complete part or all of the actual operations based on instructions from the program code.
[0047] In addition, it can be understood that the program code read from the storage medium is written to a memory provided in an expansion board inserted into the computer or written to a memory provided in an expansion unit connected to the computer, and then based on the instructions of the program code, a CPU installed on the expansion board or the expansion unit is enabled to perform part or all of the actual operations, thereby realizing the functions of any of the above-mentioned embodiments.
[0048] It should be noted that not all steps and modules in the above-mentioned processes and device structures are necessary, and some steps or modules can be ignored according to actual needs. The execution order of each step is not fixed and can be adjusted as needed. The system structure described in the above-mentioned embodiments can be a physical structure or a logical structure, that is, some modules may be implemented by the same physical entity, or some modules may be implemented by multiple physical entities, or some components in multiple independent devices may be implemented together.
[0049] The above-described embodiments are only preferred embodiments for fully illustrating the present invention, and the protection scope of the present invention is not limited thereto. Equivalent substitutions or changes made by those skilled in the art based on the present invention are within the protection scope of the present invention. The protection scope of the present invention shall be subject to the claims.
Claims
1. A method for managing the QoS of computing tasks in a 6G mobile network, characterized in that include: Step 1: After the terminal is connected to the mobile network, a computing task is initiated through the default bearer established by the core network. A request is initiated based on the computing task, and task indicators are obtained based on the request. Step 2: Create a mapping table between task indicators and network indicators, and convert the task indicators into corresponding network indicators. Step 3: Notify PCF through the core network N5 interface and establish a dedicated QoS bearer for computing tasks in the core network. Step 4: Transmit the data of subsequent computing tasks through a dedicated QoS bearer.
2. According to claim 1, a method for managing the QoS of computing tasks in a 6G mobile network is characterized in that Step 2 includes: establishing a task indicator and network indicator mapping table, and converting the task type, task time, and task accuracy in the task indicators into corresponding network indicators through the task indicator and network indicator mapping table. The network indicators include network parameter delay, packet loss rate, and priority.
3. According to claim 1, a method for managing the QoS of computing tasks in a 6G mobile network is characterized in that Step 4 includes: transmitting data of subsequent computing tasks according to the policy parameters of the core network through a dedicated QoS bearer, where the policy parameters include access control parameters, session control parameters, authentication control parameters and policy control parameters.
4. According to a method for managing QoS of computing tasks in a 6G mobile network in claim 1, it is characterized in that step 4 includes: Computing tasks are divided into different priorities according to their importance and urgency. High-priority tasks are processed preferentially through dedicated QoS bearers.
5. A computing task QoS management device in a 6G mobile network, characterized in that It includes task management module, conversion module, QoS bearer management module and transmission module. After the task management module connects the terminal to the mobile network, it initiates the computing task through the default bearer established by the core network, initiates a request based on the computing task, and obtains the task indicators based on the request. The conversion module establishes a mapping table between task indicators and network indicators, and converts the task indicators into corresponding network indicators. The QoS bearer management module notifies the PCF through the core network N5 interface to establish a dedicated QoS bearer for computing tasks in the core network. The transmission module transmits the data of subsequent computing tasks through a dedicated QoS bearer.
6. A 6G mobile network computing task QoS management device according to claim 5, characterized in that the conversion The module establishes a mapping table of task indicators and network indicators, and converts the task type, task time, and task accuracy in the task indicators into corresponding network indicators through the mapping table. The network indicators include network parameters such as delay, packet loss rate, and priority.
7. A 6G mobile network computing task QoS management device according to claim 5, characterized in that The transmission module transmits the data of subsequent computing tasks through a dedicated QoS bearer according to the policy parameters of the core network. The policy parameters include access control parameters, session control parameters, authentication control parameters and policy control parameters.
8. The device for managing computing task Qos in a 6G mobile network according to claim 5, characterized in that The transmission module divides computing tasks into different priorities according to their importance and urgency, and gives priority to high-priority tasks through dedicated QoS bearers.
9. A computer readable medium, characterized in that The computer-readable medium stores computer instructions, and when the computer instructions are executed by the processor, the processor executes the method for managing the QoS of computing tasks in a 6G mobile network as described in any one of claims 1 to 4.
Citation Information
Patent Citations
Resource allocation method and device for computing task, network element and medium
CN115706733A
Strategy determination or resource allocation method and device of calculation task, network element and medium
CN115915289A
Computing service method and apparatus for mobile network, and network function unit
WO2024188082A1