Method and device for constructing 5g private network service operation platform

By constructing a 5G private network business operation platform and adopting a three-tier cloud architecture of front-end, middle-end, and back-end, the platform solves the problems of specialization and integration in 5G private network product development and operation, realizes full lifecycle management and multi-terminal interface functional module deployment, and improves the platform's scalability and maintainability.

CN119966791BActive Publication Date: 2025-12-09CHINA UNITED NETWORK COMM GRP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202311474677.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-07
Publication Date
2025-12-09
Estimated Expiration
2043-11-07

AI Technical Summary

Technical Problem

The lack of mature solutions in existing technologies has resulted in deficiencies in the professional development, design, and centralized operation of 5G private network products. This hinders the development and application of 5G private network services, preventing rapid design, online ordering, fast delivery, and centralized operation.

Method used

A 5G private network service operation platform is constructed, which adopts a three-layer cloud architecture of front-end, middle platform and back-end. The back-end receives and processes network service data and provides data support for the middle platform. The front-end provides interactive services for private network users. The middle platform responds to front-end requests based on back-end data and realizes the deployment of multi-terminal interface functional modules.

Benefits of technology

It enables full lifecycle management of 5G private network products, improves the scalability, high availability and maintainability of the operation platform, reduces costs, and meets user needs in different scenarios.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119966791B_ABST
    Figure CN119966791B_ABST
Patent Text Reader

Abstract

The application provides a 5G private network service operation platform construction method and device, relates to the technical field of computers, is used for constructing a one-stop supporting and integrated operation 5G private network service operation platform, and realizes 5G private network product whole life cycle management.The method comprises the following steps: constructing an operation platform architecture, the operation platform architecture comprises a front desk, a middle desk and a back office; the back office is connected with the middle desk, the back office is used for receiving network service data, and data support is provided for the middle desk; the front desk is connected with the middle desk, the front desk is used for providing interactive services for private network users, and interactive information of the private network users is sent to the middle desk; the middle desk receives the interactive information sent by the front desk, and according to the network service data of the back office, the front desk is provided with a response result corresponding to the interactive information.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of computers, and in particular to a 5G private network service operation platform construction method and device. BACKGROUND

[0002] 5th-Generation Mobile Communication Technology Private Network (5G Private Network) products involve a variety of industry customer needs, and the business model and technical implementation need to adapt to complex business scenarios, resulting in a large and complex overall product system, which puts high requirements on 5G private network product planning, design, development, delivery, operation and service support.

[0003] Currently, there is a lack of mature solutions for professional development and design and intensive operation of 5G private network products, and the one-stop support and integrated operation capabilities for 5G private networks are relatively insufficient, which cannot achieve rapid design, online ordering, rapid delivery and intensive operation of 5G private network products, thereby restricting the development and application of 5G private network services. SUMMARY

[0004] The present application provides a 5G private network service operation platform construction method and device for constructing a one-stop support and integrated operation 5G private network service operation platform, and realizing 5G private network product full life cycle management.

[0005] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0006] In a first aspect, a 5G private network service operation platform construction method is provided, which includes: constructing an operation platform architecture, the operation platform architecture including a front desk, a middle desk and a back office; connecting the back office with the middle desk, the back office being configured to receive network service data and provide data support for the middle desk; connecting the front desk with the middle desk, the front desk being configured to provide interactive services for private network users and send interactive information of the private network users to the middle desk; controlling the middle desk to receive the interactive information sent by the front desk and provide response results corresponding to the interactive information for the front desk according to the network service data of the back office.

[0007] Optionally, the network service data includes operation data, network resource data, network performance data and network alarm data; the method further includes: connecting the back office with a business support system (BSS) and an operation support system (OSS) respectively; controlling the back office to obtain the operation data from the BSS; and controlling the back office to obtain the network resource data, the network performance data and the network alarm data from the OSS.

[0008] Optionally, the control background obtains operation data from the BSS, including: the control background collects operation data from the BSS in real time; the control background obtains network resource data from the OSS, including: the control background collects network resource data from the OSS in a non-real-time manner; the control background obtains network performance data from the OSS, including: the control background collects network performance data from the OSS in a real-time or non-real-time manner; and the control background obtains network alarm data from the OSS, including: the control background collects network alarm data from the OSS in real time.

[0009] Optionally, the middle stage includes a product mall module corresponding to the 5G private network service, an operation support module, and a maintenance support module; the operation process of the 5G private network service is divided into a pre-sale stage, a sale stage, and an after-sale stage, and pre-sale project information corresponding to the pre-sale stage, sale project information corresponding to the sale stage, and after-sale project information corresponding to the after-sale stage are obtained; function modules of the product mall module and the operation support module are determined according to the pre-sale project information and the sale project information; and function modules of the maintenance support module are determined according to the after-sale project information.

[0010] In a second aspect, a device for constructing a 5G private network service operation platform is provided, and the device includes a construction unit, a processing unit, and a receiving unit. The construction unit is configured to construct an operation platform architecture, and the operation platform architecture includes a front stage, a middle stage, and a background. The processing unit is configured to connect the background with the middle stage, and the background is configured to receive network service data and provide data support for the middle stage. The processing unit is also configured to connect the front stage with the middle stage, and the front stage is configured to provide interactive services for private network users and send interactive information of the private network users to the middle stage. The receiving unit is configured to control the middle stage to receive the interactive information sent by the front stage, and provide response results corresponding to the interactive information for the front stage according to network service data of the background.

[0011] Optionally, the network service data includes operation data, network resource data, network performance data, and network alarm data. The processing unit is specifically configured to: connect the background with a business support system (BSS) and an operation support system (OSS); control the background to obtain operation data from the BSS; and control the background to obtain network resource data, network performance data, and network alarm data from the OSS.

[0012] Optionally, the processing unit is specifically configured to: control the background to obtain operation data from the BSS, including: controlling the background to collect operation data from the BSS in real time; control the background to obtain network resource data from the OSS, including: controlling the background to collect network resource data from the OSS in a non-real-time manner; control the background to obtain network performance data from the OSS, including: controlling the background to collect network performance data from the OSS in a real-time or non-real-time manner; and control the background to obtain network alarm data from the OSS, including: controlling the background to collect network alarm data from the OSS in real time.

[0013] Optionally, the middle platform comprises a product mall module corresponding to the 5G private network service, an operation support module, and an operation and maintenance support module; the processing unit is specifically configured to: divide the operation process of the 5G private network service into a pre-sale stage, a mid-sale stage, and an after-sale stage, and obtain pre-sale project information corresponding to the pre-sale stage, mid-sale project information corresponding to the mid-sale stage, and after-sale project information corresponding to the after-sale stage; determine the function modules of the product mall module and the operation support module according to the pre-sale project information and the mid-sale project information; and determine the function modules of the operation and maintenance support module according to the after-sale project information.

[0014] In a third aspect, an electronic device is provided, 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 method for constructing a 5G private network service operation platform according to the first aspect.

[0015] In a fourth aspect, a computer-readable storage medium is provided, and the computer-readable storage medium stores instructions thereon, when the instructions in the computer-readable storage medium are executed by a processor of an electronic device, the electronic device is enabled to perform the method for constructing a 5G private network service operation platform according to the first aspect.

[0016] The technical scheme provided by the embodiments of the present application at least brings the following beneficial effects: the construction device constructs a 5G private network service operation platform, the 5G private network service operation platform comprises a front end, a middle platform, and a back end, the back end is connected with the middle platform, and the back end is configured to receive network service data and provide data support for the middle platform; the front end is connected with the middle platform, and the front end is configured to provide interactive services for private network users and send interactive information of the private network users to the middle platform; the middle platform is configured to receive the interactive information sent by the front end and provide response results corresponding to the interactive information for the front end according to the network service data of the back end. The 5G private network service operation platform adopts a three-layer cloud architecture of the front end, the middle platform, and the back end, so that the operation platform has better scalability, high availability, easy maintainability, and low cost, and other advantages. The back end provides data support for the middle platform, the middle platform provides response results corresponding to the interactive information for the front end, the interaction between the user and the 5G private network service operation platform is realized, the customer can understand product-related information through the operation platform, the customer manager can understand customer-related information and product operation-related information through the operation platform, and the operation platform front end is successfully realized on multiple ends, a plurality of function modules are deployed on the interface, the use demand of the private network users in different scenarios can be met, and the whole life cycle management of the private network product is realized. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced. Obviously, the accompanying drawings in the following description only represent some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0018] Figure 1 A 5G private network service operation platform construction system structure schematic diagram provided for the embodiments of the present application;

[0019] Figure 2 A flowchart of a 5G private network service operation platform construction method provided for the embodiments of the present application;

[0020] Figure 3 A 5G private network service operation platform data collection schematic diagram provided for the embodiments of the present application;

[0021] Figure 4 A 5G private network service operation flowchart provided for the embodiments of the present application;

[0022] Figure 5 A 5G private network service operation flowchart function module schematic diagram provided for the embodiments of the present application;

[0023] Figure 6 A 5G private network service operation platform structure schematic diagram provided for the embodiments of the present application;

[0024] Figure 7 A construction device structure schematic diagram provided for the embodiments of the present application;

[0025] Figure 8 A structure schematic diagram of an electronic device provided for the embodiments of the present application. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments only represent some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0027] It should be noted that in the embodiments of the present application, the words "exemplary" or "for example" are used to mean serving as an example, instance, or illustration. Any embodiment or design presented as "exemplary" or "for example" in the embodiments of the present application should not be construed as preferred or advantageous over other embodiments or design. In fact, the use of the words "exemplary" or "for example" is intended to present concepts in a particular manner. The words "exemplary" or "for example" are used to present concepts in a particular manner.

[0028] It should also be noted that in the embodiments of the present application, "of", "corresponding" and "corresponding" are sometimes used interchangeably. It should be noted that when the distinction is not emphasized, the meanings expressed are consistent.

[0029] In order to clearly describe the technical solutions of the embodiments of the present application, in the embodiments of the present application, "first", "second" and the like are used to distinguish the same or similar items with basically the same function and role. Those skilled in the art can understand that "first", "second" and the like are not limited in number and execution order.

[0030] Before explaining the embodiments of the present application in detail, some related technical terms and related technologies involved in the embodiments of the present application are introduced.

[0031] 5G network has three characteristics: high bandwidth, low delay, multi-access. However, many times, enterprises do not need these business characteristics at the same time, but only want to obtain all the control of 5G network, high reliability, security, privacy, etc. Public network cannot fully meet these specific needs. Compared with public network, 5G private network is a private network with unified connectivity, optimized services and secure communication in a specific area, providing the freedom of enterprise customized network, and can provide different configurations according to the use place and work type, which has obvious advantages in privacy and security.

[0032] 5G private network industry is still in the development and introduction period, and is constantly developing under the joint efforts of telecom operators, communication equipment manufacturers, vertical industry customers and industry chain partners. However, the penetration rate of 5G private network in enterprises is low, that is, there is still a great development space for 5G private network construction.

[0033] 5G private network products involve a variety of industry customer needs, and the business model and technical implementation need to adapt to complex and changeable business scenarios, resulting in a large and complex overall product system, which puts forward high requirements for private network product planning, design, development, delivery, operation and maintenance and service support.

[0034] At present, there is a lack of mature solutions for professional development and design and intensive operation of 5G private network products, and the one-stop support and integrated operation capability for 5G private network is relatively insufficient, which cannot realize rapid design, online ordering, rapid delivery and intensive operation of private network products, and restricts the development and application of 5G private network business.

[0035] In view of the above problems, the application provides a construction method of a 5G private network business operation platform, which includes a front desk, a middle desk and a back office. The back office is connected with the middle desk, and is used for receiving network service data and providing data support for the middle desk; the front desk is connected with the middle desk, and is used for providing interactive services for private network users and sending interactive information of the private network users to the middle desk; the middle desk receives the interactive information sent by the front desk, and provides response results corresponding to the interactive information for the front desk according to the network service data of the back office; the 5G private network business operation platform successfully realizes providing an operation platform front end interface on multiple ends, and multiple function modules are deployed on the interface, which can meet the use requirements of private network users in different scenarios and realize whole life cycle management of private network products.

[0036] The communication method provided by the embodiments of the application will be described in detail below with reference to the accompanying drawings.

[0037] Figure 1 A 5G private network business operation platform construction system provided by an embodiment of the application is shown. As shown in Figure 1 The 5G private network business operation platform construction system 10 includes a construction device 11 and a server 12. The construction device 11 and the server 12 can be connected by a wired manner or a wireless manner, which is not limited in the embodiments of the application.

[0038] The construction device 11 is used for constructing a 5G private network business operation platform on the server 12. The 5G private network business operation platform adopts a three-layer cloud architecture, including a front desk, a middle desk and a back office. The construction device 11 connects the back office with the middle desk, and connects the front desk with the middle desk, so as to realize the construction of the 5G private network business operation platform. The specific construction method can be referred to the introduction of the following embodiments, which will not be described here.

[0039] The construction device 11 and the server 12 can be an integrated electronic device. For the convenience of description, the construction device 11 and the server 12 are described separately in the embodiments of the application.

[0040] The construction device 11 can be an electronic device with a data processing function. For example, the construction device 11 can be a computer, a tablet computer, a notebook computer, an ultra-mobile personal computer (UMPC), or the like; the construction device 11 can also be a server, and the specific type of the construction device 11 is not limited in the embodiments of the present application.

[0041] The server 12 can be a single server, a server cluster, a chip in a server, or a system on chip, and the specific type of the server is not limited in the embodiments of the present application.

[0042] Figure 2 FIG. 1 is a flow diagram of a construction method of a 5G private network service operation platform according to some example embodiments. In some embodiments, the construction method of the 5G private network service operation platform can be applied to the 5G private network service operation platform as shown in FIG. 2, or can be applied to other similar devices. Figure 1

[0043] Figure 2 As shown in FIG. 1, the construction method of the 5G private network service operation platform provided in the embodiments of the present application includes the following S201-S204.

[0044] S201, constructing an operation platform architecture.

[0045] The operation platform architecture includes a front-end, a middle-end, and a back-end.

[0046] As a possible implementation, in order to make the operation platform have better scalability, high availability, easy maintenance, and low cost, and to ensure that the system can meet various needs and cope with various challenges, the construction device adopts a three-layer cloud architecture to complete the construction of the 5G private network operation platform architecture, and divides the operation platform architecture into a front-end, a middle-end, and a back-end according to business logic.

[0047] S202, connecting the back-end to the middle-end.

[0048] The back-end is configured to receive network service data and provide data support for the middle-end.

[0049] As a possible implementation, the construction device controls the back-end to receive network service data (the network service data includes operation data, network resource data, network performance data, and network alarm data), and connects the back-end to the middle-end, and transmits the network service data processed by the back-end to the middle-end.

[0050] ​​It should be noted that the construction device control backend receives network service data, including: the construction device control backend is connected to both the Business Support System (BSS) and the Operation Support System (OSS). The OSS is an integrated, information-resource-sharing support system for telecommunications operators, mainly composed of network management, system management, billing, sales, accounting, and customer service components. It is responsible for the inspection and management of the entire network's communication quality and operation, and monitors and controls various devices. After the connection is established, the construction device control backend collects operational data from the BSS in real time, network resource data from the OSS (non-real-time), network performance data from the OSS (real-time or non-real-time), and network alarm data from the OSS (real-time). After collection, the construction device control backend processes the aforementioned network service data and connects the backend to the middle platform, transmitting the processed network service data to the middle platform.

[0051] Table 1

[0052] Data type Collection scheme Operational data Real-time Network resource data Non-real-time Network performance data Real-time and non-real-time coexistence Network alarm data Real-time

[0053] For example, the construction device control backend connects to BSS and OSS respectively. After the connection is completed, the construction device control backend receives network service data, as shown in Table 1. Based on the business scenario, the above network service data is divided into four types: operation data, network resource data, network performance data and network alarm data. According to the real-time requirements of the data, there are two data collection schemes: real-time and non-real-time, in order to reduce the pressure of data collection in the backend.

[0054] like Figure 3 As shown, the construction device control backend collects operational data from the BSS in real time. This includes: for operational data with high real-time and reliability requirements such as intent orders, orders, and invoices, the construction device uses transmission methods such as Representational State Transfer Application Program Interface (REST API), message queues, and sockets to push the above operational data from the BSS to the backend in real time; for operational data generated by the operation platform, such as solution design information and product listing information, the construction device also uses transmission methods such as REST API, message queues, and sockets to push the operational data generated by the operation platform to the BSS in real time, ensuring that the operational data of the 5G private network service operation platform and the data of the BSS are consistent.

[0055] The construction device controls the background to collect network resource data from the OSS in a non-real-time manner, including: for network resource data that does not change frequently (including user data generated by special network users logging in to the 5G special network business operation platform in different ways, main data for uniquely identifying the identity of the user such as product data and identity information, and service data generated in the process of the special network users using the platform, etc.), the construction device uses file or REST API, database, etc. Transmission method, the background controls the OSS to collect network resource data every day or every six hours.

[0056] The construction device controls the background to collect network performance data from the OSS in a real-time or non-real-time manner, including: according to the service quality collection frequency, the network performance data is divided into real-time network performance data and non-real-time network performance data (high collection frequency for real-time network performance data, and low collection frequency for non-real-time network performance data). For real-time network performance data, the construction device uses REST API transmission method, and the background controls the OSS to collect real-time network performance data in real time; for non-real-time network performance data, the construction device uses REST API interface, database and file transmission method, and the background controls the OSS to collect non-real-time network performance data every day or every fifteen minutes or every hour.

[0057] The construction device controls the background to collect network alarm data from the OSS in real time, including: network alarm data has very high real-time requirements, the construction device uses REST API, message queue, socket, etc. Transmission method, push the network alarm data from the OSS to the background in real time, for example, after the special network product is delivered to the customer, the operation platform continuously monitors the special network and the special network product, and for the product that occurs fault, timely push the alarm data associated with the order.

[0058] After the network service data collection is completed, the construction device controls the background to process the above network service data, and verifies and manages the above network service data to ensure the correctness, security and integrity of the data, and connects the background with the middle office, and transmits the network service data processed by the background to the middle office.

[0059] S203, connect the front office with the middle office.

[0060] Among them, the front office is used to provide interactive services for special network users, and sends the interactive information of the special network users to the middle office; the special network users can be customers who want to purchase 5G special network products, or customer managers responsible for the sales of special network products, etc.

[0061] As a possible implementation manner, the construction device controls the front stage to interface the private network user through the World Wide Web (WEB), an Application (APP), and a mini program, and provides interactive services for the private network user, and sends the interactive information of the private network user requesting to access the middle stage function module to the middle stage.

[0062] In S204, the middle stage receives the interactive information sent by the front stage, and provides the front stage with a response result corresponding to the interactive information according to the network service data of the back stage.

[0063] As a possible implementation manner, the middle stage includes a product mall module corresponding to the 5G private network service, an operation support module, and a maintenance support module. The construction device divides the operation process of the 5G private network service into a pre-sale stage, an in-sale stage, and an after-sale stage, acquires pre-sale project information corresponding to the pre-sale stage, in-sale project information corresponding to the in-sale stage, and after-sale project information corresponding to the after-sale stage, and determines the function modules of the product mall module and the operation support module according to the pre-sale project information and the in-sale project information, respectively, and determines the function modules of the maintenance support module according to the after-sale project information, to complete the architecture design of the middle stage. After the architecture design of the middle stage is completed, the construction device controls the middle stage to receive the interactive information sent by the front stage, and provides the front stage with a response result corresponding to the interactive information according to the network service data of the back stage, that is, a front-end interface providing product display, service acceptance, service delivery, and centralized maintenance, and the like, can be realized on multiple terminals, which can meet the use requirements of the private network user in different scenarios.

[0064] For example, the 5G private network product development and operation process can be summarized into seven parts, including product strategy, product market, product demand, product planning, product development, product listing, and product life cycle management, based on the product management concept. Among them, product planning, product development, and product listing are the contents that need to be focused on for building an integrated product operation support system, such as Figure 4 As shown in FIG. 7, the construction device divides the operation process of the 5G private network service into a pre-sale stage, an in-sale stage, and an after-sale stage based on the product life cycle, to realize the closed-loop processing from product design, service delivery, and maintenance support.

[0065] The pre-sales stage mainly realizes product planning, product development and product listing capabilities, and systematically and procedurally completes the landing of the product sales plan. The sales stage mainly realizes product display, business acceptance and business opening capabilities, and the purpose is to organically combine the product sales to the customer, the business acceptance and the business opening related links in the system, including the customer watching the 5G private network product display, the intention / consultation information of the 5G private network product and the customer order, etc. The post-sales stage mainly realizes the operation and maintenance monitoring capability of the 5G private network product after delivery. After the 5G private network product is actually delivered to the customer, the device control platform is constructed to continuously monitor the operation and maintenance of the 5G private network and the 5G private network product, and to ensure the stable operation of the 5G private network product. The three stages are independent but closely related, and need to be planned, designed and implemented as a whole, so as to realize the goal of one-stop support and integrated operation.

[0066] The device construction obtains the pre-sales project information corresponding to the pre-sales stage, the sales project information corresponding to the sales stage, and the post-sales project information corresponding to the post-sales stage, that is, the function modules of the three stages of pre-sales stage, sales stage and post-sales stage are designed. As shown in Figure 5 The pre-sales stage mainly includes a product design module, a scheme design module and a product listing module. The product design module mainly focuses on the definition of the 5G private network product, including product name, product description, product classification, product source and product type information. This module mainly defines the product characteristics according to the above information to form a specific 5G private network product that can be sold. The scheme design module is associated with a specific application scenario to supplement network equipment types, quantities, fees and delivery information in specific scenarios to form a specific application scenario sales scheme. The product listing module is mainly used to list the 5G private network product that can be formally sold in the application mall of the government and enterprise platform, for the customer manager to place an order.

[0067] The middle stage mainly includes a product display module, a business acceptance module and a business opening module. The product display module mainly includes a mall module and a business opportunity management module. The mall module is used to display 5G private network product information, 5G private network product functions and solutions. Customers can initiate an intention single for a specific product through the mall module, which facilitates subsequent customer managers to contact specific customers. The business opportunity management module is mainly used to record the needs of potential customers, so that customer managers who have the ability to meet the needs of the customers can quickly claim the customers, realizing the common purpose of business opportunities. The business acceptance module mainly includes a resource exploration module and a product ordering module. The resource exploration module provides global / regional existing resource configuration and utilization, which is used to support customer managers / project managers to quickly evaluate resources. The product ordering module is mainly used to determine whether the existing resources meet the customer's needs. When the existing resources meet the customer's needs, the customer manager can place an order in the product ordering module, display the ordered products in the mall module, and place an order in the customer self-service ordering module to complete the product purchase. The business opening module mainly includes an order management module, a business delivery module and a bill management module. The order management module can be used for customer managers to check customer order information. The business delivery module can be used for customer managers to check customer business opening information. The bill management module can be used for customer managers to check product bill information. Customer managers can master customer order information and business opening information through the order unified management capability provided by the order management module, the business delivery module and the bill management module, and can achieve one-stop management of the actual business opening process, including acceptance and approval, on-site construction, completion acceptance and commissioning, and rental charging.

[0068] The after-sales stage mainly includes a private network operation and maintenance module. The module provides 5G private network centralized operation and maintenance functions, covering the entire 5G private network, including terminals, Internet of Things cards, wireless networks, transmission networks, core networks, mobile edge computing (MEC), slices, private lines, etc., realizing the linkage processing of private network alarm, performance, configuration and resources. After the actual delivery of the private network product to the customer, the device constructs the module to receive the network alarm data provided by the background, and continuously monitors and controls the 5G private network and the 5G private network product, pushes the alarm data in real time, accurately locates the fault reason and uniformly maintains the resource information, achieving closed-loop management in the operation and maintenance process.

[0069] The construction device determines the function modules of the product mall module and the operation support module based on the pre-sales project information and the in-sales project information, that is, the function modules in which the service object is the customer in the pre-sales stage and the in-sales stage are deployed in the product mall module, and the function modules in which the service object is the customer manager in the pre-sales stage and the in-sales stage are deployed in the operation support module, and then determines the function modules of the operation and maintenance support module according to the after-sales project information, to complete the architecture design of the middle platform. After the architecture design of the middle platform is completed, the construction device controls the middle platform to receive the interaction information sent by the front platform, and provides the response result corresponding to the interaction information for the front platform according to the network service data of the back platform, that is, the front-end interface providing the functions of product display, business acceptance, business delivery, and centralized operation and maintenance on multiple terminals can meet the use requirements of the special network users in different scenarios. For example, the customer and the customer manager can log in to the operation platform through WEB, APP, and applet, the customer can see product display, the latest activities, consult products, and product self-service ordering, and the customer manager can understand customer information, master customer order information and business opening situation, and perform operation and maintenance monitoring on the product after the product is sold, to ensure the stable operation of the product.

[0070] As shown in Figure 6 , the construction device constructs a 5G special network business operation platform, first constructs an operation platform architecture, and the operation platform architecture includes a front platform, a middle platform, and a back platform. The construction device controls the back platform to be connected with the BSS and the OSS, after the connection is completed, controls the back platform to collect operation data from the BSS in real time, collect network resource data from the OSS in real time, collect network performance data from the OSS in real time or in real time, and collect network alarm data from the OSS in real time, and controls the back platform to be connected with the middle platform, and transmits the network service data processed by the back platform to the middle platform. The construction device controls the front platform to be connected with the special network users through WEB, APP, and applet, provides interactive services for the special network users, and sends the interaction information in which the special network users request to access the function modules of the middle platform to the middle platform.

[0071] The construction device divides the operation process of the private network service into a pre-sale stage, a sale stage and an after-sale stage, obtains pre-sale project information corresponding to the pre-sale stage, sale project information corresponding to the sale stage and after-sale project information corresponding to the after-sale stage, and determines function modules of a product mall module and an operation support module according to the pre-sale project information and the sale project information, and determines function modules of a maintenance support module according to the after-sale project information, to complete the architecture design of the middle platform. After the architecture design of the middle platform is completed, the construction device controls the middle platform to receive interaction information sent by the front platform, and provides a response result corresponding to the interaction information for the front platform according to network service data of the back platform, that is, a front-end interface providing product display, service acceptance, service delivery and centralized maintenance and other functions on multiple terminals is realized, which can meet the use requirements of private network users in different scenarios. For example, customers and account managers can log in to the operation platform through WEB, APP and applet and the like, customers can see product display, the latest activities, consultation products and customer self-ordering and the like, account managers can understand customer information, master customer order information and service opening and perform maintenance monitoring on products after the products are sold to ensure stable operation of the products and the like. The construction device completes the construction of the 5G private network service operation platform by constructing the front platform, the middle platform and the back platform and deploying function modules in the front platform, the middle platform and the back platform, realizes closed-loop processing of product design, service delivery and maintenance support, that is, realizes full life cycle management of private network products.

[0072] It should be noted that, as shown in Figure 6 The construction device controls the front platform to interface with private network users through WEB, APP and applet and the like to provide interaction services for private network users. That is, the construction device deploys a user layer and a presentation layer in the front platform, deploys a group user module, a provincial branch user module and a city user module in the user layer, and deploys a WEB module, an APP module and an applet module in the presentation layer. Based on the function modules in the user layer and the function modules in the presentation layer, the construction device can meet the use requirements of private network users in different scenarios.

[0073] The construction device controls the background to be connected with the BSS and the OSS respectively, obtains the operation data from the BSS, obtains the network resource data, the network performance data and the network alarm data from the OSS, and controls the background to be connected with the middle station, so as to transmit the network service data processed by the background to the middle station. That is, the construction device deploys the data processing layer and the data collection layer in the background, deploys the summary calculation module, the data quality monitoring and maintenance module in the data processing layer, and deploys the collection management module in the data collection layer. Based on the function modules of the data collection layer and the data processing layer, the background can collect the operation data from the BSS in real time, collect the network resource data from the OSS in a non-real-time manner, collect the network performance data from the OSS in a real-time or non-real-time manner, and collect the network alarm data from the OSS in a real-time manner. The network service data collected above is processed, and the network service data processed is transmitted to the middle station to provide data support for the function modules of the middle station.

[0074] The construction device divides the operation process of the private network service into the pre-sale stage, the sale stage and the post-sale stage, obtains the pre-sale project information corresponding to the pre-sale stage, the sale project information corresponding to the sale stage and the post-sale project information corresponding to the post-sale stage, determines the function modules of the product mall module and the operation support module according to the pre-sale project information and the sale project information, and determines the function modules of the operation and maintenance support module according to the post-sale project information, so as to complete the architecture design of the middle station. That is, the construction device deploys the application layer in the middle station, and deploys the product mall module, the operation support module and the operation and maintenance support module in the application layer. The product mall module mainly includes the product display module, the solution display module, the recent activity module, the customer self-service order module, the product consultation module and the WeChat applet module. The operation support module mainly includes the product design module, the scheme design module, the product listing module, the consultation order management module, the business acceptance module, the order management module, the business delivery module, the bill management module, the marketing map module and the operation analysis module. The operation and maintenance support module mainly includes the business monitoring module, the resource query module and the alarm query module.

[0075] After the architecture design of the middle station is completed, the construction device controls the middle station to receive the interaction information sent by the front station, and provides the response result corresponding to the interaction information for the front station according to the network service data of the background. That is, based on the product mall module, the customer can see the product display, the latest activity, the consultation product and the product self-service order. Based on the operation support module, the customer manager can understand the customer information and master the customer order information and the business opening situation. Based on the operation and maintenance support module, the customer manager can perform the operation and maintenance monitoring on the product after the product is sold, so as to ensure the stable operation of the product.

[0076] The technical scheme provided by the embodiments of the present application at least brings the following beneficial effects: the technical scheme constructs a 5G private network service operation platform, the 5G private network service operation platform comprises a front stage, a middle stage and a back stage, the back stage is connected with the middle stage, the back stage is configured to receive network service data and provide data support for the middle stage; the front stage is connected with the middle stage, the front stage is configured to provide interactive services for private network users and send interactive information of the private network users to the middle stage; the middle stage is configured to receive the interactive information sent by the front stage and provide response results corresponding to the interactive information for the front stage according to the network service data of the back stage. The 5G private network service operation platform adopts a three-layer cloud architecture of the front stage, the middle stage and the back stage, so that the operation platform has better scalability, high availability, easy maintainability and low cost and other advantages. The back stage provides data support for the middle stage, and the middle stage provides response results corresponding to the interactive information for the front stage, so that the interaction between the user and the 5G private network service operation platform is realized, the customer can understand the product related information through the operation platform, the customer manager can understand the customer related information and the product operation related information through the operation platform, and the operation platform front end interface on multiple ends is successfully realized, a plurality of function modules are deployed on the interface, the use demand of the private network user in different scenes can be met, and the whole life cycle management of the private network product is realized.

[0077] The above embodiments mainly introduce the scheme provided by the embodiments of the present application from the perspective of the device (apparatus). It can be understood that, in order to implement the above method, the device or apparatus contains corresponding hardware structure and / or software module for executing each method process, which can constitute a material information determination device. Those skilled in the art should easily realize that, in combination with the algorithm steps of each example described in the embodiments of the present application, the present application can be realized in the form of hardware or the combination of hardware and computer software. Whether a certain function is executed by hardware or computer software driven hardware depends on the specific application and design constraints of the technical scheme. The skilled person can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present application.

[0078] The embodiments of the present application can divide the function modules of the device or apparatus according to the above method examples, for example, the device or apparatus can divide each function module corresponding to each function, or two or more functions can be integrated in one processing module. The above integrated module can be realized in the form of hardware or software function module. It should be noted that the division of the modules in the embodiments of the present application is illustrative, and is only a logical function division, and another division mode can be used in actual implementation.

[0079] Figure 7 is a structural schematic diagram of a construction device according to an example embodiment. Referring toFigure 7 As shown, the construction device 30 provided by the embodiment of the present application comprises a construction unit 301, a processing unit 302 and a receiving unit 303.

[0080] The construction unit 301 is configured to construct an operation platform architecture, the operation platform architecture comprising a front-end, a middle-end and a back-end. The processing unit 302 is configured to connect the back-end with the middle-end, the back-end being configured to receive network service data and provide data support for the middle-end. The processing unit 302 is further configured to connect the front-end with the middle-end, the front-end being configured to provide interactive services for a private network user and send interactive information of the private network user to the middle-end. The receiving unit 303 is configured to control the middle-end to receive the interactive information sent by the front-end and provide a response result corresponding to the interactive information for the front-end according to the network service data of the back-end.

[0081] Optionally, the network service data comprises operation data, network resource data, network performance data and network alarm data. The processing unit 302 is specifically configured to connect the back-end with a business support system BSS and an operation support system OSS respectively, control the back-end to acquire the operation data from the BSS, and control the back-end to acquire the network resource data, the network performance data and the network alarm data from the OSS.

[0082] Optionally, the processing unit 302 is specifically configured to control the back-end to acquire the operation data from the BSS, including controlling the back-end to collect the operation data from the BSS in real time. The processing unit 302 is specifically configured to control the back-end to acquire the network resource data from the OSS, including controlling the back-end to collect the network resource data from the OSS in a non-real time manner. The processing unit 302 is specifically configured to control the back-end to acquire the network performance data from the OSS, including controlling the back-end to collect the network performance data from the OSS in a real time manner or in a non-real time manner. The processing unit 302 is specifically configured to control the back-end to acquire the network alarm data from the OSS, including controlling the back-end to collect the network alarm data from the OSS in a real time manner.

[0083] Optionally, the middle-end comprises a product mall module corresponding to a private network service, an operation support module and a maintenance support module. The processing unit 302 is specifically configured to divide an operation process of the private network service into a pre-sale stage, a mid-sale stage and an after-sale stage, acquire pre-sale project information corresponding to the pre-sale stage, mid-sale project information corresponding to the mid-sale stage and after-sale project information corresponding to the after-sale stage, determine function modules of the product mall module and the operation support module according to the pre-sale project information and the mid-sale project information, and determine a function module of the maintenance support module according to the after-sale project information.

[0084] Figure 8 is a structural schematic diagram of an electronic device provided by the present application. Figure 8The electronic device 40 can include at least one processor 401 and a memory 402 for storing processor-executable instructions, wherein the processor 401 is configured to execute the instructions in the memory 402 to implement the method for constructing the 5G private network service operation platform in the above embodiments.

[0085] In addition, the electronic device 40 can further include a communication bus 403 and at least one communication interface 404.

[0086] The processor 401 can be a central processing unit (CPU), a micro-processing unit, an ASIC, or one or more integrated circuits for controlling the execution of programs of the present application.

[0087] The communication bus 403 can include a path for transmitting information between the above components.

[0088] The communication interface 404 uses any transceiver-like device for communicating with other devices or communication networks, such as an Ethernet, a radio access network (RAN), a wireless local area network (WLAN), etc.

[0089] The memory 402 can be a read-only memory (ROM) or other type of static storage device that can store static information and instructions, a random access memory (RAM) or other type of dynamic storage device that can store information and instructions, an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage or other magnetic storage devices, or any other medium capable of carrying or storing desired program code in the form of instructions or data structures and that can be accessed by a computer, but is not limited to this. The memory can exist independently and be connected to the processor 401 through a bus. The memory can also be integrated with the processor 401.

[0090] The memory 402 is used to store instructions for executing the programs of the present application, and the processor 401 is used to control the execution. The processor 401 is used to execute the instructions stored in the memory 402, thereby realizing the functions in the method of the present application.

[0091] As an example, in conjunction with Figure 7 , the functions implemented by the construction unit 301, the processing unit 302, and the receiving unit 303 in the construction apparatus 30 are the same as the functions of the processor 401 in Figure 8 .

[0092] In a specific implementation, as an example, the processor 401 can include one or more CPUs, such as the CPU0 and the CPU1 in Figure 8 .

[0093] In a specific implementation, as an example, the electronic device 40 can include multiple processors, such as the processor 401 and the processor 407 in Figure 8 . Each of these processors can be a single-CPU processor or a multi-CPU processor. Here, a processor can refer to one or more devices, circuits, and / or processing cores for processing data (for example, computer program instructions).

[0094] In a specific implementation, as an example, the electronic device 40 can further include an output device 405 and an input device 406. The output device 405 communicates with the processor 401 and can display information in various ways. For example, the output device 405 can be a liquid crystal display (LCD), a light emitting diode (LED) display device, a cathode ray tube (CRT) display device, or a projector, etc. The input device 406 communicates with the processor 401 and can accept input of a user object in various ways. For example, the input device 406 can be a mouse, a keyboard, a touch screen device, or a sensor device, etc.

[0095] Those skilled in the art can understand that the structure shown in Figure 8 does not constitute a limitation on the electronic device 40, and can include more or fewer components than those shown, or combine certain components, or use different arrangements of components.

[0096] In addition, the present application also provides a computer readable storage medium, when the instructions in the computer readable storage medium are executed by the processor of the electronic device, the electronic device can execute the construction method of the 5G private network service operation platform provided by the above-mentioned embodiments.

[0097] In addition, the present application also provides a computer program product, including computer instructions, when the computer instructions run on the electronic device, the electronic device executes the construction method of the 5G private network service operation platform provided by the above-mentioned embodiments.

[0098] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope and spirit of the application being indicated by the following claims.

Claims

1. A method for constructing a 5G private network service operation platform, characterized in that, The method includes: An operation platform architecture is constructed, which includes a front-end, a middle-end, and a back-end; the middle-end includes a product mall module, an operation support module, and an operation and maintenance support module corresponding to 5G private network services. The backend is connected to the middle platform. The backend is used to receive network service data and provide data support to the middle platform. The network service data includes operation data, network resource data, network performance data, and network alarm data. The back-end systems are connected to the Business Support System (BSS) and the Operation Support System (OSS), respectively. The backend is controlled to obtain the operational data from the BSS; The backend controls the acquisition of network resource data, network performance data, and network alarm data from the OSS. The front end is connected to the middle platform. The front end is used to provide interactive services for private network users and send the interactive information of private network users to the middle platform. The control platform receives interactive information sent by the front end and provides the front end with the corresponding response result of the interactive information based on the network service data of the back end. The control platform receives the interactive information sent by the front-end and provides the front-end with the corresponding response result based on the network service data of the back-end, including: The operation process of the 5G private network service is divided into pre-sales stage, sales stage and after-sales stage, and the pre-sales project information corresponding to the pre-sales stage, the sales stage corresponding to the sales stage and the after-sales project information corresponding to the after-sales stage are obtained. Based on the pre-sales project information and the sales project information, the functional modules of the product mall module and the operation support module are determined respectively. Based on the after-sales project information, determine the functional modules of the operation and maintenance support module.

2. The method according to claim 1, characterized in that, Controlling the backend to obtain the operational data from the BSS includes: controlling the backend to collect the operational data from the BSS in real time; Controlling the backend to obtain the network resource data from the OSS includes: controlling the backend to collect the network resource data from the OSS in non-real-time; Controlling the backend to obtain the network performance data from the OSS includes: controlling the backend to collect the network performance data from the OSS in real time or not in real time; Controlling the backend to obtain the network alarm data from the OSS includes: controlling the backend to collect the network alarm data from the OSS in real time.

3. A device for constructing a 5G private network service operation platform, characterized in that, The construction device includes a construction unit, a processing unit, and a receiving unit; The construction unit is used to build the operation platform architecture, which includes a front-end, a middle platform, and a back-end; the middle platform includes a product mall module, an operation support module, and an operation and maintenance support module corresponding to 5G private network services. The processing unit is used to connect the backend to the middle platform. The backend is used to receive network service data and provide data support to the middle platform. The network service data includes operation data, network resource data, network performance data, and network alarm data. The processing unit is specifically configured to: connect the backend to the Business Support System (BSS) and the Operation Support System (OSS) respectively; control the backend to obtain the operational data from the BSS; and control the backend to obtain the network resource data, the network performance data, and the network alarm data from the OSS. The processing unit is also used to connect the front end to the middle platform, wherein the front end is used to provide interactive services for private network users and send the interactive information of private network users to the middle platform; The receiving unit is used to control the middle platform to receive the interactive information sent by the front end, and to provide the front end with the response result corresponding to the interactive information based on the network service data of the back end. The processing unit is specifically configured to: divide the operation process of the 5G private network service into a pre-sales stage, a sales stage, and an after-sales stage; and obtain pre-sales project information corresponding to the pre-sales stage, sales stage corresponding to the sales stage, and after-sales project information corresponding to the after-sales stage; determine the functional modules of the product mall module and the operation support module based on the pre-sales project information and the sales stage information; and determine the functional modules of the operation and maintenance support module based on the after-sales project information.

4. The construction apparatus according to claim 3, characterized in that, The processing unit is specifically configured to: control the backend to obtain the operational data from the BSS, including: controlling the backend to collect the operational data from the BSS in real time; control the backend to obtain the network resource data from the OSS, including: controlling the backend to collect the network resource data from the OSS in non-real time; control the backend to obtain the network performance data from the OSS, including: controlling the backend to collect the network performance data from the OSS in real time or in non-real time; and control the backend to obtain the network alarm data from the OSS, including: controlling the backend to collect the network alarm data from the OSS in real time.

5. An electronic device, characterized in that, include: A processor and a memory for storing instructions executable by the processor; wherein the processor is configured to execute instructions to implement the method for constructing a 5G private network service operation platform according to any one of claims 1-2.

6. A computer-readable storage medium storing instructions thereon, characterized in that, When the instructions in the computer-readable storage medium are executed by the processor of the electronic device, the electronic device is able to perform the method for constructing a 5G private network service operation platform as described in any one of claims 1-2.

Citation Information

Patent Citations

  • Insurance platform system

    CN112053249A

  • Escalator full-life-cycle data management method and system based on data center station

    CN112559488A