Method and device for flexibly configuring detection rules of novel metropolitan area network new network access equipment
By adopting standardized configuration and automated execution methods for network access equipment testing, the problems of low efficiency and error-proneness in traditional network access equipment testing and management have been solved, achieving efficient, standardized and controllable testing management and ensuring the rigor and transparency of equipment access.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-15
- Publication Date
- 2026-04-14
AI Technical Summary
Traditional network access device testing and management relies on manual operation, lacks unified standards, resulting in low efficiency, easy errors, inability to achieve real-time tracking and transparency, and lack of visualization means, making it difficult to ensure the rigor of access.
The system adopts a full-process design that features standardized configuration, automated execution, and visual display. By defining all basic elements and their relationships, it achieves high efficiency, standardization, and controllability in network access device testing. This includes configuring network access testing groups and rules, automatically matching testing steps and recording status, and providing visual display.
It achieves efficient, standardized and controllable testing of network access equipment, ensures consistency in access quality, significantly improves acceptance efficiency, provides accurate status judgment and convenient traceability, and prevents unqualified equipment from entering the network.
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Figure CN121864580A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of network access device detection and management, and in particular to a method and apparatus for flexibly configuring detection rules for newly connected devices in a new metropolitan area network. Background Technology
[0002] The new metropolitan area network is a next-generation metropolitan area bearer network characterized by "cloud as the core, fixed and mobile convergence, network element cloudification, and protocol unification". It aims to meet the high bandwidth, low latency, high reliability and rapid deployment requirements of digital services such as 5G, cloud computing, IoT and AI, and is a smooth evolution of traditional IP metropolitan area networks.
[0003] Traditional network access device testing and management relies heavily on manual operation. The process lacks standardized procedures, and approval and verification depend entirely on manual control, leading to significant operational arbitrariness. Manual execution, triggered via command line or interface, is time-consuming, incapable of batch processing, inefficient, and prone to errors. Furthermore, the lack of visualization means that testing progress and status cannot be tracked in real time, resulting in a lack of transparency. Operation records are fragmented, making it difficult to trace the source of problems. Access verification depends on experience, making oversights possible, and the static control model cannot guarantee the rigor of access procedures. Summary of the Invention
[0004] To address the aforementioned technical problems in traditional network access equipment testing and management, this invention provides a novel method and apparatus for flexibly configuring testing rules for new network access equipment in a metropolitan area network. Through a full-process design of standardized configuration, automated execution, and visual display, it achieves high efficiency, standardization, and controllability in network access equipment testing, while also meeting the stringent requirements of equipment access management.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] In one embodiment of the present invention, a novel method for flexibly configuring detection rules for newly connected devices in a metropolitan area network is proposed, the method comprising:
[0007] Define all basic elements in the database, including inspection items, network access detection steps, and network access detection step categories, and establish the association between network access detection step categories and network access detection steps. Then configure network access detection groups and network access detection rules through page operations.
[0008] After a single device is entered through the page, the device’s management status is set to pending management by default. The corresponding network access detection rules are automatically matched according to the device’s attributes, and the detection is performed step by step according to the network access detection stage, network access detection group and detection item level.
[0009] The device's detection details are displayed in layers on the page.
[0010] Furthermore, the configuration content of the network access detection group includes: defining the group name; setting the network access detection stage to which the group belongs; and setting the inspection items associated with the group.
[0011] The configuration content of the network access detection rule includes: defining the rule name; defining the resource scope to which the rule belongs, wherein the resource scope is set according to conditions such as node, device attribute, device manufacturer and device model; selecting the network access detection group to be executed under each network access detection stage; and selecting the inspection item to be executed under each network access detection group.
[0012] Furthermore, during the testing process, the testing status, testing time, and testing log for each inspection item are recorded; then, the testing status is automatically determined according to the order of the inspection item, the network access testing group, the network access testing process, the network access testing process classification, and the device's management status.
[0013] If the detection status of all the inspection items under the network access detection group is "pass", then the detection status of the network access detection group is recorded as "pass".
[0014] If all network access detection groups in the network access detection process pass, the detection status of the network access detection process is recorded as normal.
[0015] If all network access testing steps under the network access testing step category are normal, then the acceptance status of the network access testing step category is "accepted"; if the acceptance status of all network access testing step categories is "accepted", then the management status of the device is automatically set to "accepted".
[0016] Furthermore, the detection details data of the device include:
[0017] Basic equipment information;
[0018] The names and corresponding status icons of each of the network access detection stages;
[0019] The details of the detection results associated with each network access detection stage include the name of each network access detection group under each network access detection stage and the corresponding detection status, the name of each inspection item under each network access detection group, the corresponding detection status, and the corresponding detailed detection log.
[0020] In one embodiment of the present invention, a novel flexible configuration device for detection rules of newly connected devices in a metropolitan area network is also proposed, the device comprising:
[0021] The configuration module is used to define all basic elements in the database, including inspection items, network access detection steps and network access detection step categories, and to establish the association between network access detection step categories and network access detection steps. Then, network access detection groups and network access detection rules are configured through page operations.
[0022] The automatic detection and status determination module is used to automatically match the corresponding network access detection rules according to the device attributes after a single device is entered through the page, and to perform the detection step by step according to the network access detection stage, network access detection group and detection item level;
[0023] The visualization module is used to display the device's detection details data in a hierarchical manner on the page.
[0024] Furthermore, the configuration content of the network access detection group includes: defining the group name; setting the network access detection stage to which the group belongs; and setting the inspection items associated with the group.
[0025] The configuration content of the network access detection rule includes: defining the rule name; defining the resource scope to which the rule belongs, wherein the resource scope is set according to conditions such as node, device attribute, device manufacturer and device model; selecting the network access detection group to be executed under each network access detection stage; and selecting the inspection item to be executed under each network access detection group.
[0026] Furthermore, during the testing process, the testing status, testing time, and testing log for each inspection item are recorded; then, the testing status is automatically determined according to the order of the inspection item, the network access testing group, the network access testing process, the network access testing process classification, and the device's management status.
[0027] If the detection status of all the inspection items under the network access detection group is "pass", then the detection status of the network access detection group is recorded as "pass".
[0028] If all network access detection groups in the network access detection process pass, the detection status of the network access detection process is recorded as normal.
[0029] If all network access testing steps under the network access testing step category are normal, then the acceptance status of the network access testing step category is "accepted"; if the acceptance status of all network access testing step categories is "accepted", then the management status of the device is automatically set to "accepted".
[0030] Furthermore, the detection details data of the device include:
[0031] Basic equipment information;
[0032] The names and corresponding status icons of each of the network access detection stages;
[0033] The details of the detection results associated with each network access detection stage include the name of each network access detection group under each network access detection stage and the corresponding detection status, the name of each inspection item under each network access detection group, the corresponding detection status, and the corresponding detailed detection log.
[0034] In one embodiment of the present invention, a computer device is also proposed, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the flexible configuration of the detection rules for the aforementioned novel metropolitan area network new network access devices.
[0035] In one embodiment of the present invention, a computer-readable storage medium is also proposed, which stores a computer program that flexibly configures the detection rules for newly connected devices in a novel metropolitan area network.
[0036] Beneficial effects:
[0037] 1. Standardized pre-configuration lays the foundation for a unified testing solution. By pre-defining core elements such as inspection items (including codes and names), network access testing procedures, and their classifications in a database, and then configuring network access testing groups and rules via a web interface, a standardized system with "unified elements and clear relationships" is constructed. This not only avoids the problems of inconsistent standards, omissions, and errors in manual testing, but also ensures that equipment of different types and manufacturers can follow unified testing standards, guaranteeing consistency in equipment access quality. Furthermore, network access testing rules support multi-dimensional configuration by node, equipment attributes, and other dimensions, adapting to diverse equipment testing needs and offering high flexibility.
[0038] 2. Automated testing process significantly improves acceptance efficiency. Once equipment is entered into the system, no manual intervention is required throughout the entire process, achieving a closed-loop workflow of "automatic rule matching → automatic testing → automatic hierarchical status determination → automatic update of management status." From inspection items, network access testing grouping, and network access testing stages, to the two categories of network access testing stages—engineering acceptance and network management function acceptance—and finally to the equipment's management status, a hierarchical automated determination mechanism is formed. This reduces the workload and human error of manual operations, avoids process bottlenecks, and significantly shortens the equipment network access acceptance cycle.
[0039] 3. Precise Status Determination, Strengthening Equipment Access Defense: A five-level progressive determination logic has been established, consisting of "Inspection Items → Network Access Testing Groups → Network Access Testing Stages → Network Access Testing Stage Classification → Equipment Management Status." Each level's status is derived from the full results of the next level, ensuring clear and unambiguous judgment standards. For example, the equipment's management status will only change to "Accepted" when both the engineering acceptance and network management function acceptance stages are "Accepted." This multi-layered control ensures that network-access equipment meets requirements in both engineering deployment and network management functions, preventing unqualified equipment from entering the network.
[0040] 4. Visualized Inspection Details for Easier Traceability and Control. The system displays comprehensive equipment inspection information in a layered manner, including basic equipment information and intuitively presenting the inspection status of network access inspection stages, groups, and items (e.g., network access inspection stages are represented by icons with different colors to distinguish their status; network access inspection groups are distinguished by red and green fonts; and inspection items are distinguished by traffic lights). It also supports linked viewing of network access inspection stages and details. This visual design allows managers to quickly grasp the equipment inspection progress and problem points, while simultaneously recording inspection time, inspection logs, and other data, providing convenient support for subsequent problem investigation and historical data tracing. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the process for the flexible configuration of detection rules for newly connected devices in a metropolitan area network according to the present invention;
[0042] Figure 2 This is a flowchart of the pre-configuration process of this invention;
[0043] Figure 3 This is a flowchart of the page input device of this invention;
[0044] Figure 4 This is a flowchart of the automatic detection and status determination process of the present invention;
[0045] Figure 5 This is a flowchart of the present invention that visualizes and displays the testing details of the device;
[0046] Figure 6 This is a schematic diagram of the flexible configuration device for the detection rules of newly connected metropolitan area network equipment according to the present invention;
[0047] Figure 7 This is a schematic diagram of the computer device structure of the present invention. Detailed Implementation
[0048] The principles and spirit of the present invention will now be described with reference to several exemplary embodiments. It should be understood that these embodiments are provided merely to enable those skilled in the art to better understand and implement the present invention, and are not intended to limit the scope of the present invention in any way. Rather, these embodiments are provided to make this disclosure more thorough and complete, and to fully convey the scope of this disclosure to those skilled in the art.
[0049] Those skilled in the art will recognize that embodiments of the present invention can be implemented as an apparatus, device, device, method, or computer program product. Therefore, this disclosure can be specifically implemented in the following forms: entirely hardware, entirely software (including firmware, resident software, microcode, etc.), or a combination of hardware and software.
[0050] According to an embodiment of the present invention, a flexible configuration method for detection rules of newly connected devices in a novel metropolitan area network (MAN) is proposed. Based on the newly connected devices in the novel MAN, the method focuses on standardized configuration, automated execution and acceptance, and visualized detailed display of the entire detection process for connected devices. By pre-defining relevant basic configurations, a complete closed loop is established from rule setting to device detection, status determination, and data presentation, achieving standardized, automated, and transparent management of connected device detection.
[0051] The principles and spirit of the present invention will be explained in detail below with reference to several representative embodiments.
[0052] Figure 1 This is a schematic diagram of the process for the flexible configuration of detection rules for newly connected devices in a metropolitan area network according to the present invention. Figure 1 As shown, this method is implemented through a three-step logic of "pre-configuration – automated execution – visual display," based on standardized configuration, centered on automated processes, and outputted by a visual interface, thus constructing a closed-loop network access device detection and management system. The specific implementation process is summarized below:
[0053] 1. Pre-configuration stage: such as Figure 2 As shown, the database defines all basic elements, including inspection items (code + name), and two categories of network access inspection stages: project acceptance / network management function acceptance. It also establishes the association between these categories and the network access inspection stages. Then, through page operations, it configures network access inspection groups (defining group name + the network access inspection stage to which the group belongs + the inspection items associated with the group) and network access inspection rules (defining rule name + the resource scope to which the rule belongs, where the resource scope is set according to conditions such as node, device attribute, device manufacturer, and device model; under each network access inspection stage, it selects the network access inspection group to be executed; under each network access inspection group, it selects the inspection items to be executed).
[0054] 2. Automatic detection and status determination stage: such as Figure 3 As shown, after a single device is entered through the page, the device's management status is set to pending management by default. The system automatically matches the corresponding network access detection rules based on the device's attributes and initiates the automatic detection process. For example... Figure 4 As shown, automatic detection begins, executing tests hierarchically according to the network access detection stage, network access detection group, and detection item, while simultaneously recording the detection status, detection time, and detection log for each inspection item. Then, the detection status is automatically determined according to the order of the inspection item, the network access detection group, the network access detection stage, the network access detection stage category, and the device's management status: If the detection status of all inspection items under the network access detection group is "passed," the detection status of the network access detection group is recorded as "passed"; if all network access detection groups under the network access detection stage are "passed," the detection status of the network access detection stage is recorded as "normal"; if all network access detection stages under the network access detection stage category (engineering acceptance or network management function acceptance) are "normal," the acceptance status of the network access detection stage category (engineering acceptance or network management function acceptance) is "accepted"; if the acceptance status of both the network access detection stage category (engineering acceptance and network management function acceptance) is "accepted," the device's management status is automatically set to "accepted."
[0055] 3. Visualization stage: such as Figure 5 As shown, the page displays the device's testing details in layers, including: basic device information; the name and corresponding status icon of each network access testing stage (the testing status of each network access testing stage is marked with a color icon); and the testing result details associated with each network access testing stage, including the name and corresponding testing status of each network access testing group under each network access testing stage (the testing status is marked in red / green font), the name and corresponding testing status of each inspection item under each network access testing group (the testing status is marked in red / green font), and the corresponding detailed testing logs, making the entire testing process data intuitive, searchable, and clearly traceable.
[0056] It should be noted that although the operation of the method of the present invention has been described in a specific order in the above embodiments and figures, this does not require or imply that the operations must be performed in that specific order, or that all the operations shown must be performed to achieve the desired result. Additionally or alternatively, certain steps may be omitted, multiple steps may be combined into one step, and / or one step may be broken down into multiple steps.
[0057] To provide a clearer explanation of the flexible configuration of the detection rules for newly connected devices in the aforementioned new metropolitan area network, a specific embodiment will be used for illustration below. However, it is worth noting that this embodiment is only for better illustrating the present invention and does not constitute an improper limitation of the present invention.
[0058] Example:
[0059] 1. Predefine check item configurations and store them in the database. The specific configuration details are as follows: check item code and check item name.
[0060] 2. Predefine the network access detection process and store it in the database.
[0061] 3. Predefine the network access testing process into two categories: engineering acceptance and network management function acceptance.
[0062] 4. Configure the relationship between the network access detection process categories and the network access detection process itself.
[0063] 5. Configure the network access detection group through the page operation and store the configuration data in the database. The specific configuration content is as follows:
[0064] (1) Define the group name;
[0065] (2) Set up the network access detection process for this group;
[0066] (3) Set the check items associated with this group.
[0067] 6. Configure network access detection rules through page operations and store the configuration data in the database. The specific configuration content is as follows:
[0068] (1) Define the rule name;
[0069] (2) Define the resource scope to which the rule belongs, and set it according to conditions such as node, equipment attribute, equipment manufacturer, and equipment model;
[0070] (3) Under each network access detection stage, select the network access detection group to be executed;
[0071] (4) Under each network access detection group, select the inspection items to be performed.
[0072] 7. After entering a single device through the page, perform the following operations:
[0073] (1) Set the device's management status to pending management by default;
[0074] (2) Automatically match network access detection rules based on the node to which the equipment belongs, equipment attributes, equipment manufacturer and equipment model information;
[0075] (3) Automatically execute each network access detection step;
[0076] (4) In a single network access test, each network access test group and each inspection item under each network access test group shall be tested and executed one by one;
[0077] (5) Record the detection status (pass or fail), detection time, and detection log for each inspection item;
[0078] (6) Record the detection status of each network access detection group. If the detection status of all inspection items under the network access detection group is "passed", the detection status of the network access detection group is recorded as "passed"; otherwise, it is recorded as "failed".
[0079] (7) Record the detection status of each network access detection step. If the detection status of all network access detection groups under the network access detection step is "pass", then the detection status of the network access detection step is normal; otherwise, it is abnormal.
[0080] (8) Judge all network access testing stages under the project acceptance category. If the testing status of all network access testing stages is normal, the acceptance status of the project acceptance category is accepted; otherwise, it is not accepted.
[0081] (9) Judge all network access testing steps under the network management function acceptance category. If the testing status of all network access testing steps is normal, the acceptance status of the network management function acceptance category is accepted; otherwise, it is not accepted.
[0082] (10) When the acceptance status of both the project acceptance category and the network management function acceptance category is "accepted", the device's management status will be automatically set to "accepted".
[0083] 8. Display detailed testing data for a single device on the page. This includes the following:
[0084] (1) Display of basic equipment information. This includes: equipment name, equipment management address, equipment model, equipment attributes, testing rules, testing time, testing status, testing results, and creator.
[0085] (2) Display area for each network access detection stage. Display the name of each network access detection stage and its corresponding color icon. The color icon is determined according to the detection status. If it is pending detection or abnormal, it is displayed in red; if it is normal, it is displayed in green; if it is in progress, it is displayed in yellow; if the detection status is empty, it is displayed in gray (indicating that the current stage has not yet been entered).
[0086] (3) Display area for test result details associated with the network access test process. Displayed in conjunction with the currently selected network access test process.
[0087] (4) Under each network access detection stage, the network access detection group is divided into different blocks for display.
[0088] (5) Display area for each network access detection group. Display the name and detection status of the network access detection group. If the detection status is "failed", it will be displayed in red font; if the detection status is "passed", it will be displayed in green font.
[0089] (6) Each inspection item under the network access inspection group displays the inspection item name, inspection status, and detailed inspection log. If the inspection status is "failed", it is displayed with a red light; if the inspection status is "passed", it is displayed with a green light.
[0090] Based on the same inventive concept, this invention also proposes a novel flexible configuration device for detecting newly connected devices in a metropolitan area network. The implementation of this device can refer to the implementation of the above-described method, and repeated details will not be elaborated further. The term "module" used below can refer to a combination of software and / or hardware that implements a predetermined function. Although the device described in the following embodiments is preferably implemented in software, hardware implementation, or a combination of software and hardware, is also possible and contemplated.
[0091] Figure 6 This is a schematic diagram of the flexible configuration device for detecting newly connected devices in a metropolitan area network according to the present invention. Figure 6 As shown, the device includes:
[0092] The configuration module 101 is used to define all basic elements in the database, including inspection items, network access detection links and network access detection link categories, and to establish the association between network access detection link categories and network access detection links. Then, network access detection groups and network access detection rules are configured through page operations.
[0093] The configuration content of the network access detection group includes: defining the group name; setting the network access detection stage to which the group belongs; and setting the inspection items associated with the group.
[0094] The configuration content of the network access detection rule includes: defining the rule name; defining the resource scope to which the rule belongs, wherein the resource scope is set according to conditions such as node, device attribute, device manufacturer and device model; selecting the network access detection group to be executed under each network access detection stage; and selecting the inspection item to be executed under each network access detection group.
[0095] The automatic detection and status determination module 102 is used to automatically match the corresponding network access detection rules according to the device attributes after a single device is entered through the page, and to perform the detection step by step according to the network access detection stage, network access detection group, and detection item hierarchy. At the same time, it records the detection status, detection time, and detection log of each inspection item. Then, it automatically determines the detection status according to the order of the inspection item, the network access detection group, the network access detection stage, the network access detection stage category, and the device's management status: if the detection status of all inspection items under the network access detection group is "passed", then the detection status of the network access detection group is recorded as "passed"; if all network access detection groups under the network access detection stage are "passed", then the detection status of the network access detection stage is recorded as "normal"; if all network access detection stages under the network access detection stage category are "normal", then the acceptance status of the network access detection stage category is "accepted"; if the acceptance status of all network access detection stage categories is "accepted", then the device's management status is automatically set to "accepted".
[0096] The visualization module 103 is used to display the detection details data of the device in layers on the page, including:
[0097] Basic equipment information;
[0098] The names and corresponding status icons of each of the network access detection stages;
[0099] The details of the detection results associated with each network access detection stage include the name of each network access detection group under each network access detection stage and the corresponding detection status, the name of each inspection item under each network access detection group, the corresponding detection status, and the corresponding detailed detection log.
[0100] It should be noted that although several modules of the flexible configuration device for the detection rules of new network-connected devices in the new metropolitan area network are mentioned in the detailed description above, this division is merely exemplary and not mandatory. In fact, according to embodiments of the present invention, the features and functions of two or more modules described above can be embodied in one module. Conversely, the features and functions of one module described above can be further divided and embodied by multiple modules.
[0101] Based on the aforementioned inventive concept, such as Figure 7 As shown, the present invention also proposes a computer device 200, including a memory 210, a processor 220, and a computer program 230 stored in the memory 210 and executable on the processor 220. When the processor 220 executes the computer program 230, it realizes the flexible configuration of the detection rules for the aforementioned new metropolitan area network new network access devices.
[0102] Based on the aforementioned inventive concept, the present invention also proposes a computer-readable storage medium storing a computer program that flexibly configures the detection rules for newly connected devices in the aforementioned novel metropolitan area network.
[0103] The invention proposes a novel method and device for flexibly configuring detection rules for newly connected devices in metropolitan area networks. Combining the design logic and implementation process of the entire set of network access device detection technology solutions, its core highlights revolve around four dimensions: standardization, automation, visualization, and precision. This not only solves the pain points of traditional network access device detection but also meets the needs of efficient management.
[0104] While the spirit and principles of the invention have been described with reference to several specific embodiments, it should be understood that the invention is not limited to the disclosed specific embodiments, and the division of aspects does not imply that features in these aspects cannot be combined for benefit; such division is merely for ease of description. The invention is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
[0105] Regarding the limitation of the scope of protection of this invention, those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without creative effort based on the technical solution of this invention are still within the scope of protection of this invention.
Claims
1. A flexible configuration method for detection rules of newly connected devices in a new metropolitan area network, characterized in that, The method includes: Define all basic elements in the database, including inspection items, network access detection steps, and network access detection step categories, and establish the association between network access detection step categories and network access detection steps. Then configure network access detection groups and network access detection rules through page operations. After a single device is entered through the page, the device’s management status is set to pending management by default. The corresponding network access detection rules are automatically matched according to the device’s attributes, and the detection is performed step by step according to the network access detection stage, network access detection group and detection item level. The device's detection details are displayed in layers on the page.
2. The method for flexibly configuring detection rules for new network-connected devices in a novel metropolitan area network according to claim 1, characterized in that, The configuration content of the network access detection group includes: defining the group name; setting the network access detection stage to which the group belongs; and setting the inspection items associated with the group. The configuration content of the network access detection rule includes: defining the rule name; defining the resource scope to which the rule belongs, wherein the resource scope is set according to conditions such as node, device attribute, device manufacturer and device model; selecting the network access detection group to be executed under each network access detection stage; and selecting the inspection item to be executed under each network access detection group.
3. The method for flexibly configuring detection rules for new network-connected devices in a novel metropolitan area network according to claim 1, characterized in that, During the testing process, the testing status, testing time, and testing log for each inspection item are recorded. Then, the testing status is automatically determined according to the order of the inspection item, the network access testing group, the network access testing process, the network access testing process classification, and the device's management status. If the detection status of all the inspection items under the network access detection group is "pass", then the detection status of the network access detection group is recorded as "pass". If all network access detection groups in the network access detection process pass, the detection status of the network access detection process is recorded as normal. If all network access testing steps under the network access testing step category are normal, then the acceptance status of the network access testing step category is "accepted"; if the acceptance status of all network access testing step categories is "accepted", then the management status of the device is automatically set to "accepted".
4. The method for flexibly configuring detection rules for new network-connected devices in a novel metropolitan area network according to claim 1, characterized in that, The device's detection details data include: Basic equipment information; The names and corresponding status icons of each of the network access detection stages; The details of the detection results associated with each network access detection stage include the name of each network access detection group under each network access detection stage and the corresponding detection status, the name of each inspection item under each network access detection group, the corresponding detection status, and the corresponding detailed detection log.
5. A device for flexibly configuring detection rules for newly connected devices in a new metropolitan area network, characterized in that: The device includes: The configuration module is used to define all basic elements in the database, including inspection items, network access detection steps and network access detection step categories, and to establish the association between network access detection step categories and network access detection steps. Then, network access detection groups and network access detection rules are configured through page operations. The automatic detection and status determination module is used to automatically match the corresponding network access detection rules according to the device attributes after a single device is entered through the page, and to perform the detection step by step according to the network access detection stage, network access detection group and detection item level; The visualization module is used to display the device's detection details data in a hierarchical manner on the page.
6. The flexible configuration device for detection rules of new metropolitan area network devices according to claim 5, characterized in that, The configuration content of the network access detection group includes: defining the group name; setting the network access detection stage to which the group belongs; and setting the inspection items associated with the group. The configuration content of the network access detection rule includes: defining the rule name; defining the resource scope to which the rule belongs, wherein the resource scope is set according to conditions such as node, device attribute, device manufacturer and device model; selecting the network access detection group to be executed under each network access detection stage; and selecting the inspection item to be executed under each network access detection group.
7. The flexible configuration device for detection rules of new metropolitan area network devices according to claim 5, characterized in that, During the testing process, the testing status, testing time, and testing log for each inspection item are recorded. Then, the testing status is automatically determined according to the order of the inspection item, the network access testing group, the network access testing process, the network access testing process classification, and the device's management status. If the detection status of all the inspection items under the network access detection group is "pass", then the detection status of the network access detection group is recorded as "pass". If all network access detection groups in the network access detection process pass, the detection status of the network access detection process is recorded as normal. If all network access testing steps under the network access testing step category are normal, then the acceptance status of the network access testing step category is "accepted"; if the acceptance status of all network access testing step categories is "accepted", then the management status of the device is automatically set to "accepted".
8. The flexible configuration device for detection rules of new metropolitan area network devices according to claim 5, characterized in that, The device's detection details data include: Basic equipment information; The names and corresponding status icons of each of the network access detection stages; The details of the detection results associated with each network access detection stage include the name of each network access detection group under each network access detection stage and the corresponding detection status, the name of each inspection item under each network access detection group, the corresponding detection status, and the corresponding detailed detection log.
9. A computer device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the method according to any one of claims 1-4.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that performs the method according to any one of claims 1-4.