A 5G private network application delivery method and system based on a 5G edge cloud and a medium

CN116193479BActive Publication Date: 2026-08-18CHINA UNITED NETWORK COMM GRP CO LTD
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Patent Information

Application Number
CN202310197225.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-03
Publication Date
2026-08-18
Estimated Expiration
2043-03-03

AI Technical Summary

Technical Problem

[0002]随着5G技术的不断成熟,基于5G专网和MEC边缘云系统的商业案例越来越多,但现有技术中的基于5G专网的资源部署和应用部署是分离的,交付过程长,无法适应5G专网应用业务的快速发展

Benefits of technology

[0041] (1) This invention enables real-time viewing of edge cloud node information for deployable applications in the 5G application delivery system by sharing data between the edge cloud nodes of the 5G application delivery system and the edge cloud system.

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Abstract

The application discloses a 5G private network application delivery method and system based on a 5G edge cloud, and a medium, the method comprising: obtaining an external deployment task; receiving delivery target information selected by an application manager according to an external deployment task displayed on a man-machine interaction interface; the delivery target information comprising product information, version information, application image information and a target MEC node to be deployed in a 5G application delivery system; synchronizing the delivery target information to a MEC operation platform, and synchronously receiving target MEC node information deployed by the MEC operation platform to complete 5G private network application delivery based on the 5G edge cloud. The method integrates an application management system and an edge cloud management system, and fuses application images and edge cloud images, so that corresponding application images can be deployed on demand during delivery, and 5G private network application delivery can be quickly realized.
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Description

Technical Field

[0001] This invention relates to the field of communication technology, and in particular to a method, system and medium for delivering 5G private network applications based on 5G edge cloud. Background Technology

[0002] As 5G technology continues to mature, there are more and more commercial cases based on 5G private networks and MEC edge cloud systems. However, in the existing technology, the resource deployment and application deployment based on 5G private networks are separate, the delivery process is long, and it cannot adapt to the rapid development of 5G private network application services. Summary of the Invention

[0003] The technical problem to be solved by this invention is to address the above-mentioned shortcomings of the prior art by proposing a 5G private network application delivery method, system and medium based on 5G edge cloud. This invention integrates the application management system and the edge cloud management system, and merges the application image and the edge cloud image. During delivery, the corresponding application image can be deployed on demand, effectively shortening the delivery process and quickly realizing the deployment and delivery of 5G private network applications.

[0004] In a first aspect, the present invention provides a 5G private network application delivery method based on 5G edge cloud, which is applied to a 5G application delivery system and includes the following steps:

[0005] S1: Obtain external deployment tasks;

[0006] S2: Receive delivery target information selected by application administrators based on the external deployment tasks displayed on the human-computer interaction interface; the delivery target information includes product information, version information, application image information, and target MEC nodes to be deployed in the 5G application delivery system.

[0007] S3: Synchronize the delivery target information to the MEC operation platform, and simultaneously receive the target MEC node information deployed by the MEC operation platform to complete the delivery of 5G private network applications based on 5G edge cloud.

[0008] Further, step S1 specifically involves the 5G application delivery system receiving external deployment tasks from the order system and / or the business management system.

[0009] Furthermore, in step S2, the acquisition of the target MEC node to be deployed specifically includes the following steps:

[0010] Synchronously receive all MEC nodes currently managed by the MEC operation platform;

[0011] The application administrator selects one MEC node from all MEC nodes as the target MEC node to be deployed.

[0012] Furthermore, the method also includes:

[0013] S0: Data processing is performed before the deployment of 5G private network applications;

[0014] The data processing specifically includes:

[0015] A1: Receive application administrators' management of product information and version information corresponding to applications in the 5G application delivery system, and upload the application image of the corresponding version information to the MEC operation platform after packaging it.

[0016] A2: Synchronize product information and application image information to the MEC operation platform image repository;

[0017] A3: Receive information on all currently managed MEC nodes from the MEC operation platform.

[0018] Secondly, the present invention provides a method for delivering 5G private network applications based on 5G edge cloud. This method is applied to an MEC operation platform and includes the following steps:

[0019] The system synchronously receives delivery target information from the 5G application delivery system. The delivery target information is selected by the application administrator based on the external deployment tasks displayed on the human-machine interface. The delivery target information includes product information, version information, application image information, and target MEC node to be delivered in the 5G application delivery system.

[0020] as well as,

[0021] The system synchronously sends the target MEC node information after deployment to the 5G application delivery system to complete the delivery of 5G private network applications based on 5G edge cloud.

[0022] Thirdly, this invention provides a 5G private network application delivery system based on 5G edge cloud, which includes a 5G application delivery system and an MEC operation platform.

[0023] The 5G application delivery system includes:

[0024] The first acquisition unit has a human-computer interaction interface, which is used to acquire externally deployed tasks and display them on the human-computer interaction interface.

[0025] The receiving unit, connected to the human-machine interface, is used to receive target information selected by the application administrator based on the external deployment task; the target information includes product information to be delivered, version information, application image information, and target MEC nodes to be deployed;

[0026] The first synchronization unit, connected to the receiving unit, is used to synchronize product information, version information, application image information, and target MEC nodes to be deployed to the MEC operation platform.

[0027] The MEC operation platform includes:

[0028] The second synchronization unit is used to synchronously receive product information, version information, application image information, and target MEC nodes to be deployed from the first synchronization unit.

[0029] The deployment unit is connected to the second synchronization unit and is used to determine the corresponding target image and deploy the target MEC node based on product information, version information, application image information and the target MEC node to be deployed.

[0030] The second synchronization unit is also used to enable the target image to synchronously feed back the deployed target MEC node information to the 5G application delivery system, so as to complete the delivery of 5G private network applications based on 5G edge cloud.

[0031] Furthermore, the first acquisition unit is connected to the order system and the business management system respectively, and is used to acquire external deployment tasks through the order system and / or the business management system.

[0032] Furthermore, the MEC operation platform also includes a determination unit.

[0033] The determining unit is used to determine all MEC nodes currently managed by the MEC operation platform;

[0034] The second synchronization unit is also connected to the determining unit and is used to synchronize all MEC nodes currently managed by the MEC operation platform to the first synchronization unit of the 5G application delivery system.

[0035] Furthermore, the 5G application delivery system also includes a data processing unit, which is used to perform data processing before the deployment of 5G private network applications. The data processing unit includes:

[0036] The packaging and uploading module is used by the 5G application delivery system to receive product information and version information corresponding to the application managed by the application administrator, and to receive the application image packaged by the application administrator with the corresponding version information and upload it to the MEC operation platform.

[0037] The first MEC synchronization module is connected to the packaging and uploading module and is used by the 5G application delivery system to synchronize product information and application image information to the MEC operation platform image repository.

[0038] The second MEC synchronization module is connected to the first MEC synchronization module and is used by the MEC operation platform to synchronize the information of all currently managed MEC nodes to the 5G application delivery system.

[0039] Fourthly, the present invention provides a computer-readable storage medium storing a computer program, which, when executed by a processor, implements the above-described method for delivering 5G private network applications based on 5G edge cloud.

[0040] The beneficial effects achieved by this invention are as follows:

[0041] (1) This invention enables real-time viewing of edge cloud node information for deployable applications in the 5G application delivery system by sharing data between the edge cloud nodes of the 5G application delivery system and the edge cloud system.

[0042] (2) The 5G application image is merged with the edge cloud system image and stored in the image repository of the edge cloud system;

[0043] (3) The 5G application delivery system can quickly copy application images between the image repository and the target edge cloud node and automatically deploy the corresponding images by selecting the deployed edge cloud node and application image. This effectively shortens the delivery process and quickly realizes the deployment of 5G private network application delivery. Attached Figure Description

[0044] Figure 1 This is the 5G private network application deployment process in the embodiments of the present invention;

[0045] Figure 2 This is the data processing flow before the deployment of 5G private network applications in this embodiment of the invention;

[0046] Figure 3 This is a schematic diagram of the overall delivery of 5G private network applications in an embodiment of the present invention;

[0047] Figure 4 This is the image management process in an embodiment of the present invention;

[0048] Figure 5 This is the service activation process in an embodiment of the present invention;

[0049] Figure 6 This is a 5G private network application delivery system in an embodiment of the present invention.

[0050] The diagram is labeled as follows: 10, First Acquisition Unit; 20, Receiving Unit; 30, First Synchronization Unit; 40, Deployment Determination Unit; 50, Second Synchronization Unit. Detailed Implementation

[0051] To enable those skilled in the art to better understand the technical solution of the present invention, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.

[0052] It is understood that the specific embodiments and accompanying drawings described herein are merely for explaining the invention and are not intended to limit the invention.

[0053] It is understood that, without conflict, the various embodiments and features in the embodiments of the present invention can be combined with each other.

[0054] It is understood that, for ease of description, only the parts related to the present invention are shown in the accompanying drawings, while the parts unrelated to the present invention are not shown in the drawings.

[0055] It is understood that each unit or module involved in the embodiments of the present invention may correspond to only one entity structure, or may be composed of multiple entity structures, or multiple units or modules may be integrated into one entity structure.

[0056] It is understood that, without conflict, the functions and steps marked in the flowcharts and block diagrams of this invention may occur in a different order than that marked in the accompanying drawings.

[0057] It is understood that the flowcharts and block diagrams of this invention illustrate the possible architecture, functions, and operations of systems, apparatuses, devices, and methods according to various embodiments of this invention. Each block in the flowchart or block diagram may represent a unit, module, program segment, or code, containing executable instructions for implementing the specified function. Furthermore, each block or combination of blocks in the block diagram and flowchart can be implemented using a hardware-based system to achieve the specified function, or using a combination of hardware and computer instructions.

[0058] It is understood that the units and modules involved in the embodiments of the present invention can be implemented by software or by hardware. For example, the units and modules can be located in a processor.

[0059] Example 1:

[0060] like Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown, this embodiment provides a 5G private network application delivery method based on 5G edge cloud. This method is applied to a 5G application delivery system and includes the following steps:

[0061] S1: Obtain external deployment tasks;

[0062] S2: Receive delivery target information selected by application administrators based on the external deployment tasks displayed on the human-computer interaction interface;

[0063] S3: Synchronize the delivery target information to the MEC operation platform, and simultaneously receive the target MEC node information deployed by the MEC operation platform to complete the delivery of 5G private network applications based on 5G edge cloud.

[0064] Specifically, external deployment tasks originate from the order system and / or the business management system. After the 5G application delivery system receives these external deployment tasks, application administrators select delivery target information based on the task on the human-machine interface. This delivery target information includes product information, version information, application image information, and the target MEC node to be deployed in the 5G application delivery system. Information synchronization or fusion is then performed. This synchronization includes synchronizing the delivery target information to the MEC operation platform and also synchronously receiving the target MEC node information deployed by the MEC operation platform to complete the delivery of 5G private network applications based on the 5G edge cloud. The target MEC node in the delivery target information is selected from all pre-deployed MEC nodes, and the specific steps include:

[0065] Simultaneously receive all MEC nodes currently managed by the MEC operation platform for delivery to 5G private network applications;

[0066] The 5G application delivery system receives one MEC node selected by the application administrator from all MEC nodes as the target MEC node to be deployed.

[0067] When making a specific selection, you can first prioritize the nodes based on their arrival time and the urgency of the task, and then select one MEC node as the target MEC node from all the currently managed MEC nodes synchronized from the MEC operation platform. Alternatively, you can select a MEC node based on its location.

[0068] like Figure 2 As shown, in order to achieve the above information synchronization or information fusion, data processing is also required before the deployment of 5G private network applications.

[0069] Data processing is performed before the deployment of 5G private network applications, specifically including:

[0070] A1: The 5G application delivery system receives product information and version information corresponding to applications managed by application administrators in the 5G application delivery system, and uploads the application image of the corresponding version information to the MEC operation platform after packaging it.

[0071] A2: The 5G application delivery system synchronizes product information and application image information to the MEC operation platform image repository;

[0072] A3: The 5G application delivery system receives information from the MEC operation platform to synchronize all currently managed MEC node information.

[0073] This embodiment is for 5G private network products. In the government and enterprise platform product center, 5G private network products are uniformly classified as private network value-added products (additional products) of MEC products. They have a unique product number in the product center and can be expanded on the corresponding 5G private network product operation platform, which effectively solves the problem of large quantity of 5G private network products with low value and repeated listing and delisting.

[0074] 5G private network products are applications deployed on MEC edge cloud IaaS resources. The traditional delivery model involves first synchronizing the delivery order information to the MEC operation platform. After resource surveying, the MEC operation platform loads the required operating system image onto the corresponding MEC node's IaaS resources based on the order information, establishes network connectivity, and then feeds back to the order system. This notifies the 5G private network product provider to log in to the corresponding MEC node's IaaS resources to install the application and conduct debugging and testing based on actual conditions. Only after successful testing is the product delivered to the customer. In this process, edge cloud resources and 5G private network products are delivered separately. As can be seen from the above delivery process, in the traditional model, the operating system image and application image are deployed and implemented separately. The delivery process is sequential yet separate. Furthermore, the skill level and attitude of the application implementation and deployment personnel can lead to various uncontrollable problems during the delivery and debugging testing process, increasing delivery time and affecting application delivery speed. This lengthy delivery process cannot meet the demand for rapid delivery of private network applications.

[0075] To accelerate the delivery of 5G applications, the 5G private network product operation platform (including the 5G application delivery system) and the MEC operation platform have negotiated to establish an independent mirror management center for 5G private network products. This mirror center is jointly managed by the MEC operation platform and the 5G private network product operation platform. Figure 4 As shown, the specific image management process is as follows:

[0076] K1: The 5G private network product operation platform (including the 5G application delivery system) should first apply for and obtain the MEC operation platform basic image list;

[0077] K2:MEC returns a basic image list to the 5G private network product operation platform (including the 5G application delivery system) upon request.

[0078] K3: Select the basic image list and place an order for the image on the 5G private network product operation platform (including the 5G application delivery system);

[0079] K4: The 5G private network product operation platform (including the 5G application delivery system) creates application images of different private network products based on the base image, and then applies for security verification of the private network product images.

[0080] K5: The MEC operation platform performs security verification on the private network product image. If the security verification is successful, it is stored in the 5G private network product image center. After the image code is returned, the 5G private network product operation platform (including the 5G application delivery system) associates the image with the product. If the verification fails, it returns to step K4 until the image is associated with the product to complete the image fusion management.

[0081] The MEC operation platform provides the basic operating system image. Private network application staff implant the application system on the basic operating system and put the relevant initialization configuration in the automated installation script. According to the characteristics of the product, it is packaged into different image versions of 5G private network products. After passing the security evaluation on the MEC operation platform, it is incorporated into the MEC operation platform's 5G private network product management center for application deployment.

[0082] After mirror fusion management, such as Figure 5 As shown, based on the existing capabilities and foundations of the government and enterprise middle platform and the MEC operation platform, the 5G private network product operation platform connects the government and enterprise middle platform and the MEC operation platform to achieve seamless integration of the entire process of 5G private network product listing, sales, ordering, and delivery.

[0083] This embodiment is applied to a 5G application delivery system. Through data sharing between the 5G application delivery system and the edge cloud nodes of the edge cloud system, the 5G application delivery system can view the edge cloud node information of deployable applications in real time. The 5G application image is merged with the edge cloud system image and stored in the image repository of the edge cloud system. By selecting the edge cloud node to be deployed and the application image, the 5G application delivery system can use the 5G private network to realize the rapid copying of the application image between the image repository and the target edge cloud node and the automatic deployment of the corresponding image.

[0084] Example 2:

[0085] like Figure 3 , Figure 4 and Figure 5 As shown, this embodiment provides a 5G private network application delivery method based on 5G edge cloud. This method is applied to an MEC operation platform and includes the following steps:

[0086] The system synchronously receives delivery target information from the 5G application delivery system. The delivery target information is selected by the application administrators based on the external deployment tasks displayed on the human-machine interface. The delivery target information includes product information, version information, application image information, and target MEC node to be delivered in the 5G application delivery system.

[0087] as well as,

[0088] The system synchronously sends the target MEC node information after deployment to the 5G application delivery system to complete the delivery of 5G private network applications based on 5G edge cloud.

[0089] The principles and processes of Example 2 and Example 1 are the same, and the same parts will not be described again.

[0090] This embodiment is applied to the MEC operation platform. Through data sharing between the edge cloud nodes of the 5G application delivery system and the edge cloud system, the 5G application delivery system can view the edge cloud node information of deployable applications in real time. The 5G application image is merged with the edge cloud system image and stored in the image repository of the edge cloud system. By selecting the edge cloud node to be deployed and the application image, the 5G application delivery system can use the 5G private network to realize the rapid copying of the application image between the image repository and the target edge cloud node and the automatic deployment of the corresponding image.

[0091] Example 3:

[0092] like Figure 3 , Figure 4 and Figure 6 As shown, this embodiment provides a 5G private network application delivery system based on 5G edge cloud. The system includes a 5G application delivery system and an MEC operation platform.

[0093] The 5G application delivery system includes:

[0094] The first acquisition unit 10 has a human-computer interaction interface, which is used to acquire externally deployed tasks and display them on the human-computer interaction interface.

[0095] The receiving unit 20 is connected to the human-machine interface and is used to receive the delivery target information selected by the application administrator based on the external deployment task. The delivery target information includes the product information, version information, application image information, and the target MEC node to be deployed.

[0096] The first synchronization unit 30 is connected to the receiving unit 20 and is used to synchronize product information, version information, application image information and target MEC nodes to be deployed to the MEC operation platform.

[0097] The MEC operating platform includes:

[0098] The second synchronization unit 50 is used to synchronously receive product information, version information, application image information, and target MEC nodes to be deployed transmitted by the first synchronization unit.

[0099] Deployment unit 40 is connected to the second synchronization unit 50 and is used to determine the corresponding target image and deploy the target MEC node based on product information, version information, application image information and the target MEC node to be deployed.

[0100] The second synchronization unit 50 is also used to enable the target image to synchronously feed back the deployed target MEC node information to the 5G application delivery system in order to complete the delivery of 5G private network applications based on 5G edge cloud.

[0101] Specifically, the first acquisition unit is connected to the order system and the business management system respectively, and is used to acquire external deployment tasks through the order system and / or the business management system.

[0102] Specifically, the MEC operation platform also includes defining units.

[0103] The determination unit is used to identify all MEC nodes currently managed by the MEC operation platform;

[0104] The second synchronization unit 50 is also connected to the determination unit and is used to synchronize all MEC nodes currently managed by the MEC operation platform to the first synchronization unit of the 5G application delivery system.

[0105] Specifically, the 5G application delivery system also includes a data processing unit, which performs data processing before the deployment of 5G private network applications. The data processing unit includes:

[0106] The packaging and uploading module is used by the 5G application delivery system to receive product information and version information corresponding to the application managed by the application administrator, and to receive the application image packaged by the application administrator with the corresponding version information and upload it to the MEC operation platform.

[0107] The first MEC synchronization module, connected to the packaging and uploading module, is used by the 5G application delivery system to synchronize product information and application image information to the MEC operation platform image repository.

[0108] The second MEC synchronization module is connected to the first MEC synchronization module and is used by the MEC operation platform to synchronize the information of all currently managed MEC nodes to the 5G application delivery system.

[0109] Note: The principles and processes of this embodiment are the same as those of Embodiment 1. The same parts will not be described again.

[0110] This embodiment enables the 5G application delivery system to share data with the edge cloud nodes of the edge cloud system, allowing the 5G application delivery system to view the edge cloud node information of deployable applications in real time; the 5G application image is merged with the edge cloud system image and stored in the image repository of the edge cloud system; by selecting the edge cloud node to be deployed and the application image, the 5G application delivery system can use the 5G private network to quickly copy the application image between the image repository and the target edge cloud node and automatically deploy the corresponding image, effectively shortening the delivery process and quickly realizing the deployment of 5G private network application delivery.

[0111] Example 4:

[0112] Based on the same technical concept as Embodiments 1 and 2, this embodiment provides a computer-readable storage medium storing a computer program that, when executed by a processor, implements the 5G private network application delivery method based on 5G edge cloud as described in Embodiment 1 or Embodiment 2.

[0113] It is understood that the above embodiments are merely exemplary implementations used to illustrate the principles of the present invention, and the present invention is not limited thereto. For those skilled in the art, various modifications and improvements can be made without departing from the spirit and essence of the present invention, and these modifications and improvements are also considered to be within the scope of protection of the present invention.

Claims

1. A method for delivering 5G private network applications based on 5G edge cloud, characterized in that, The method includes the following steps: The 5G application delivery system acquires external deployment tasks; The 5G application delivery system receives delivery target information selected by application administrators based on external deployment tasks displayed on the human-machine interface; The delivery target information includes product information, version information, application image information, and target MEC nodes to be deployed in the 5G application delivery system. The 5G application delivery system synchronizes the delivery target information to the MEC operation platform and simultaneously receives the target MEC node information that has been deployed on the MEC operation platform, so as to complete the delivery of 5G private network applications based on 5G edge cloud. The MEC operation platform synchronously receives delivery target information from the 5G application delivery system. as well as, The MEC operation platform synchronously sends the information of the target MEC node that has been deployed to the 5G application delivery system. The 5G private network product operation platform includes a 5G application delivery system. The 5G private network product operation platform, in consultation with the MEC operation platform, establishes an independent image management center for 5G private network products. This image management center is jointly managed by the MEC operation platform and the 5G private network product operation platform. The specific image management process is as follows: 5G private network product operation platform applies to obtain MEC operation platform basic image list; The MEC operation platform returns a basic image list to the 5G private network product operation platform upon request. The 5G private network product operation platform selects the basic image list and places an order for the image; The 5G private network product operation platform creates application images including different private network products based on the basic image, and then applies for security verification of the private network product images. The MEC operation platform performs security verification on the private network product image. If the security verification is successful, it is stored in the 5G private network product image center. After the image code is returned, the 5G private network product operation platform associates the image with the product. If the verification fails, it returns to the steps of creating application images including different private network products based on the base image, until the image is associated with the product to complete the image fusion management.

2. The 5G private network application delivery method based on 5G edge cloud according to claim 1, characterized in that, The 5G application delivery system acquires external deployment tasks, specifically by receiving external deployment tasks from the order system and / or the business management system.

3. The 5G private network application delivery method based on 5G edge cloud according to claim 1, characterized in that, The specific steps for obtaining the target MEC node to be deployed include: Synchronously receive all MEC nodes currently managed by the MEC operation platform; The application administrator selects one MEC node from all MEC nodes as the target MEC node to be deployed.

4. The 5G private network application delivery method based on 5G edge cloud according to any one of claims 1 to 3, characterized in that, The method further includes: Data processing is performed before the deployment of 5G private network applications; The data processing specifically includes the following steps: A1: Receive application administrators' management of product information and version information corresponding to applications in the 5G application delivery system, and upload the application image of the corresponding version information to the MEC operation platform after packaging it. A2: Synchronize product information and application image information to the MEC operation platform image repository; A3: Receive information on all currently managed MEC nodes from the MEC operation platform.

5. A 5G private network application delivery system based on 5G edge cloud, characterized in that, It includes a 5G private network product operation platform and an MEC operation platform, wherein the 5G private network product operation platform includes a 5G application delivery system; The 5G application delivery system includes: The first acquisition unit has a human-computer interaction interface, which is used to acquire externally deployed tasks and display them on the human-computer interaction interface. The receiving unit, connected to the human-machine interface, is used to receive delivery target information selected by the application administrator based on the external deployment task; the delivery target information includes product information, version information, application image information, and target MEC nodes to be deployed in the 5G application delivery system. The first synchronization unit, connected to the receiving unit, is used to synchronize product information, version information, application image information, and target MEC nodes to be deployed to the MEC operation platform. The MEC operation platform includes: The second synchronization unit is used to synchronously receive product information, version information, application image information, and target MEC nodes to be deployed from the first synchronization unit. The deployment unit is connected to the second synchronization unit and is used to determine the corresponding target image and deploy the target MEC node based on product information, version information, application image information and the target MEC node to be deployed. The second synchronization unit is also used to enable the target image to synchronously feed back the deployed target MEC node information to the 5G application delivery system. in, The 5G private network product operation platform and the MEC operation platform negotiated to establish an independent image management center for 5G private network products. This image management center is jointly managed by the MEC operation platform and the 5G private network product operation platform. The specific image management process is as follows: 5G private network product operation platform applies to obtain MEC operation platform basic image list; The MEC operation platform returns a basic image list to the 5G private network product operation platform upon request. The 5G private network product operation platform selects the basic image list and places an order for the image; The 5G private network product operation platform creates application images including different private network products based on the basic image, and then applies for security verification of the private network product images. The MEC operation platform performs security verification on the private network product image. If the security verification is successful, it is stored in the 5G private network product image center. After the image code is returned, the 5G private network product operation platform associates the image with the product. If the verification fails, it returns to the steps of creating application images including different private network products based on the base image, until the image is associated with the product to complete the image fusion management.

6. The 5G private network application delivery system based on 5G edge cloud according to claim 5, characterized in that, The first acquisition unit is connected to the order system and the business management system respectively, and is used to acquire external deployment tasks through the order system and / or the business management system.

7. The 5G private network application delivery system based on 5G edge cloud according to claim 5, characterized in that, The MEC operation platform also includes a determination unit. The determining unit is used to determine all MEC nodes currently managed by the MEC operation platform; The second synchronization unit is also connected to the determining unit and is used to synchronize all MEC nodes currently managed by the MEC operation platform to the first synchronization unit of the 5G application delivery system.

8. The 5G private network application delivery system based on 5G edge cloud according to any one of claims 5 to 7, characterized in that, The 5G application delivery system further includes a data processing unit, which is used to process data before the deployment of 5G private network applications. The data processing unit includes: The packaging and uploading module is used by the 5G application delivery system to receive product information and version information corresponding to the application managed by the application administrator, and to receive the application image packaged by the application administrator with the corresponding version information and upload it to the MEC operation platform. The first MEC synchronization module is connected to the packaging and uploading module and is used by the 5G application delivery system to synchronize product information and application image information to the MEC operation platform image repository. The second MEC synchronization module is connected to the first MEC synchronization module and is used by the MEC operation platform to synchronize the information of all currently managed MEC nodes to the 5G application delivery system.

9. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that, when executed by a processor, implements the 5G private network application delivery method based on 5G edge cloud as described in any one of claims 1 to 4.

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