A method and system for automatically generating inspection strategies for operation and maintenance management
By dynamically adjusting the inspection strategy, the fault processing time threshold of the inspection module is optimized based on the inspection processing results and fault types, the problem of insufficient strategy adjustment in the operation and maintenance management of information systems is solved, and the reliability and accuracy of operation and maintenance management is improved.
Patent Information
- Application Number
- CN202410576275.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-10
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2044-05-10
AI Technical Summary
It is difficult for the existing technology to automatically adjust the operation and maintenance strategy according to changes in the software and hardware of the information system, resulting in insufficient reliability of operation and maintenance management.
By determining the inspection module based on the inspection processing results and fault problem types, obtaining the fault processing time threshold, optimizing the automatic inspection strategy to adapt to different inspection times and fault types, and achieving dynamic adjustment of the strategy.
It improves the processing reliability of the inspection module and the accurate evaluation of automatic inspection strategies, ensuring differentiated adjustments and operational reliability of operation and maintenance management.
Smart Images

Figure CN118411148B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of operation and maintenance management, and in particular relates to a method and system for automatically generating inspection strategies for operation and maintenance management. Background Art
[0002] The large-scale application of new technologies such as cloud computing, big data, the Internet of Things, and mobile internet presents greater challenges to the agile provision of information and communications services, rapid deployment, and secure and stable operation. The diversity of O&M targets makes it difficult for power companies to replicate the automated O&M experience of internet companies. Therefore, implementing inspection and management of information and communications systems has become a key technical challenge.
[0003] To solve the above problems, existing technical solutions often adopt fixed automated operation and maintenance strategies to manage the software and hardware of information systems. However, the operating status of different types of software and hardware in information systems is not static, but gradually changes over time. Therefore, how to achieve automated adjustment of operation and maintenance strategies has become a technical problem that needs to be solved urgently.
[0004] In response to the above technical problems, the present invention provides a method and system for automatically generating inspection strategies for operation and maintenance management. Summary of the Invention
[0005] To achieve the purpose of the present invention, the present invention adopts the following technical solutions:
[0006] According to one aspect of the present invention, a method for automatically generating inspection strategies for operation and maintenance management is provided.
[0007] A method for automatically generating inspection strategies for operation and maintenance management, characterized by specifically comprising:
[0008] S1 determines the inspection fault problem under different inspection times based on the inspection processing result of the automatic inspection strategy of the information system, and proceeds to the next step when it is determined that the automatic inspection strategy needs to be adjusted according to the inspection fault problem;
[0009] S2 determines the business modules that match different inspection fault problems based on the types of inspection fault problems, and uses them as inspection modules. It also determines the fault processing time thresholds of different inspection modules based on the usage data of different inspection modules.
[0010] S3 obtains the inspection processing time of the inspection fault problem of the inspection module under different inspection times, and when it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements in combination with the fault processing time threshold of the inspection module, proceeds to the next step;
[0011] S4 optimizes and adjusts the automatic inspection strategy based on the inspection processing time and fault processing time threshold of the inspection fault problem at different inspection times of different inspection modules.
[0012] The beneficial effects of the present invention are:
[0013] 1. The fault processing time thresholds of different inspection modules are determined by the usage data of different inspection modules, thereby realizing the screening of inspection modules with higher inspection processing reliability from the perspective of the users and usage time of the inspection modules, and ensuring the processing reliability of the inspection modules by adjusting the fault processing time thresholds of the inspection modules.
[0014] 2. According to the inspection processing time of the inspection failure problem of the inspection module under different inspection times and the fault processing time threshold of the inspection module, it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements. From the perspective of the inspection processing time of different inspection modules not meeting the requirements, an accurate evaluation of the inspection processing reliability of the automatic inspection strategy is achieved, which also lays the foundation for differentiated adjustments to the automatic inspection strategy and the operational reliability of the inspection module.
[0015] A further technical solution is that the inspection fault problem includes the problem type of the inspection fault problem and a matching business module.
[0016] A further technical solution is to determine the need to adjust the automatic inspection strategy based on the inspection fault problem, specifically including:
[0017] The number of inspections with inspection failures is used as the number of fault inspections, and the basic problem evaluation amount of the automatic inspection strategy is determined based on the number of fault inspections and the proportion of the number of historical inspections;
[0018] Obtain the number of inspection fault problems of different problem types with different fault inspection times, and determine the inspection problem evaluation quantity with different fault inspection times based on the number of business modules matching different inspection fault problems;
[0019] The basic problem evaluation amount of the automatic inspection strategy is corrected by the inspection problem evaluation amounts of different fault inspection times to obtain a comprehensive problem evaluation amount, and based on the comprehensive problem evaluation amount, it is determined whether the automatic inspection strategy needs to be adjusted.
[0020] A further technical solution is to determine whether the automatic inspection strategy needs to be adjusted based on the comprehensive problem evaluation amount, specifically including:
[0021] When the comprehensive problem evaluation amount does not meet the requirement, it is determined that the automatic inspection strategy needs to be adjusted.
[0022] A further technical solution is that when the inspection processing reliability of the automatic inspection strategy meets the requirements, it is determined not to perform optimization adjustment of the automatic inspection strategy.
[0023] A further technical solution is to optimize and adjust the automatic inspection strategy, specifically including:
[0024] Determine the comprehensive deviation of the inspection time of different inspection modules based on the inspection processing time of the inspection fault problem under different inspection times of different inspection modules and the deviation of the fault processing time threshold;
[0025] The adjustment results of the inspection processing sequence of different inspection modules in the automatic inspection strategy are determined based on the comprehensive deviation of the inspection duration, and the automatic inspection strategy is optimized and adjusted according to the adjustment results.
[0026] On the other hand, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-mentioned method for automatically generating inspection strategies for operation and maintenance management.
[0027] Other features and advantages will be described in the following description, and in part will become apparent from the description, or understood by practicing the invention. The purpose and other advantages of the invention are realized and obtained by the structures particularly pointed out in the description and the drawings.
[0028] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, preferred embodiments are given below and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The above and other features and advantages of the present invention will become more apparent by describing in detail exemplary embodiments thereof with reference to the accompanying drawings.
[0030] Figure 1 It is a flow chart of a method for automatically generating inspection strategies for operation and maintenance management;
[0031] Figure 2 It is a flow chart of a method for determining the need to adjust the automatic inspection strategy based on the inspection fault problem;
[0032] Figure 3 The present invention is a flowchart of a method for determining a fault processing time threshold of an inspection module. DETAILED DESCRIPTION
[0033] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be embodied in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art. Like reference numerals in the figures represent like or similar structures, and thus their detailed description will be omitted.
[0034] The terms "a", "an", "the", and "said" are used to indicate the presence of one or more elements / components / etc.; the terms "including" and "having" are used to express an open-ended inclusive meaning and mean that additional elements / components / etc. may be present in addition to the listed elements / components / etc. Example
[0035] To solve the above problems, according to one aspect of the present invention, Figure 1 As shown, according to one aspect of the present invention, a method for automatically generating an inspection strategy for operation and maintenance management is provided, which is characterized by specifically comprising:
[0036] S1 determines the inspection fault problem under different inspection times based on the inspection processing result of the automatic inspection strategy of the information system, and proceeds to the next step when it is determined that the automatic inspection strategy needs to be adjusted according to the inspection fault problem;
[0037] Specifically, the inspection fault problem includes the problem type of the inspection fault problem and a matching business module.
[0038] Further, such as Figure 2 As shown, it is determined that the automatic inspection strategy needs to be adjusted according to the inspection fault problem, specifically including:
[0039] The number of inspections with inspection failures is used as the number of fault inspections, and the basic problem evaluation amount of the automatic inspection strategy is determined based on the number of fault inspections and the proportion of the number of historical inspections;
[0040] Obtain the number of inspection fault problems of different problem types with different fault inspection times, and determine the inspection problem evaluation quantity with different fault inspection times based on the number of business modules matching different inspection fault problems;
[0041] The basic problem evaluation amount of the automatic inspection strategy is corrected by the inspection problem evaluation amounts of different fault inspection times to obtain a comprehensive problem evaluation amount, and based on the comprehensive problem evaluation amount, it is determined whether the automatic inspection strategy needs to be adjusted.
[0042] Furthermore, determining whether the automatic inspection strategy needs to be adjusted based on the comprehensive problem evaluation amount specifically includes:
[0043] When the comprehensive problem evaluation amount does not meet the requirement, it is determined that the automatic inspection strategy needs to be adjusted.
[0044] In another embodiment, determining that the automatic inspection strategy needs to be adjusted based on the inspection fault problem specifically includes:
[0045] The number of inspections with inspection failure problems is used as the number of fault inspections, and whether the number of fault inspections meets the requirements is determined. If so, the next step is entered; if not, it is determined that the automatic inspection strategy needs to be adjusted;
[0046] Determine the basic problem evaluation amount of the automatic inspection strategy based on the number of fault inspections and its proportion in the historical inspection number, and judge whether the basic problem evaluation amount of the automatic inspection strategy meets the requirements. If so, proceed to the next step; if not, determine that the automatic inspection strategy needs to be adjusted;
[0047] Obtain the number of inspection fault problems of different problem types with different fault inspection times, and determine the inspection problem evaluation amount of different fault inspection times in combination with the number of business modules matching different inspection fault problems, and judge whether there is a fault inspection number whose inspection problem evaluation amount does not meet the requirement. If so, proceed to the next step; if not, determine that there is no need to adjust the automatic inspection strategy;
[0048] Determine whether the number of fault inspections for which the inspection problem assessment amount does not meet the requirement meets the requirement, if so, proceed to the next step, if not, determine that the automatic inspection strategy needs to be adjusted;
[0049] The basic problem evaluation amount of the automatic inspection strategy is corrected by the inspection problem evaluation amounts of different fault inspection times to obtain a comprehensive problem evaluation amount, and based on the comprehensive problem evaluation amount, it is determined whether the automatic inspection strategy needs to be adjusted.
[0050] Furthermore, it is determined whether the basic problem evaluation quantity of the automatic inspection strategy meets the requirements, specifically including:
[0051] When the basic problem evaluation amount of the automatic inspection strategy is not within a preset range, it is determined that the basic problem evaluation amount of the automatic inspection strategy does not meet the requirements.
[0052] In another embodiment, determining that the automatic inspection strategy needs to be adjusted based on the inspection fault problem specifically includes:
[0053] S11 takes the number of inspections with inspection faults as the number of fault inspections, and determines whether the number of fault inspections is less than the preset number of fault inspections. If so, proceed to the next step; if not, proceed to step S13;
[0054] S12 determines the number of inspection fault problems according to the inspection fault problems of different fault inspection times, and judges whether the number of inspection fault problems is less than the preset number of fault problems. If so, it is determined that the automatic inspection strategy does not need to be adjusted. If not, proceed to the next step.
[0055] S13 obtains the number of inspection fault problems of different problem types with different fault inspection times, and determines the inspection problem evaluation quantities of different fault inspection times in combination with the number of business modules that match different inspection fault problems, and uses the fault inspection times for which the inspection problem evaluation quantities do not meet the requirements as the screening fault inspection times;
[0056] S14 determines a comprehensive inspection problem evaluation amount of the screening fault inspection times based on different inspection problem evaluation amounts of the screening fault inspection times and the screening fault inspection times, and judges whether the comprehensive inspection problem evaluation amount of the screening fault inspection times meets the requirements. If so, proceeds to the next step; if not, determines that the automatic inspection strategy needs to be adjusted.
[0057] S15 determines the basic problem evaluation amount of the automatic inspection strategy based on the number of fault inspections and its proportion in the historical inspection times, corrects the basic problem evaluation amount of the automatic inspection strategy through the inspection problem evaluation amounts of different fault inspection times to obtain a comprehensive problem evaluation amount, and determines whether the automatic inspection strategy needs to be adjusted based on the comprehensive problem evaluation amount.
[0058] S2 determines the business modules that match different inspection fault problems based on the types of inspection fault problems, and uses them as inspection modules. It also determines the fault processing time thresholds of different inspection modules based on the usage data of different inspection modules.
[0059] Furthermore, the usage data includes the number of users of the inspection module and the usage time of different users.
[0060] Specifically, such as Figure 3 As shown, the method for determining the fault processing time threshold of the inspection module is:
[0061] Determining the number of users of the inspection module at different times based on usage data of the inspection module, and determining a basic processing time threshold of the inspection module based on the number of users of the inspection module at different times and the number of times when the number of users is greater than a preset number of users;
[0062] Obtaining the usage time of different users and determining the usage processing busyness of the inspection module based on the number of users whose usage time is longer than the preset usage time;
[0063] The fault processing time threshold of the inspection module is determined according to the usage processing busyness of the inspection module and the basic processing time threshold.
[0064] Furthermore, the fault processing time threshold of the inspection module is determined based on the usage processing busyness of the inspection module and the basic processing time threshold, specifically including:
[0065] The compensation duration of the inspection module is determined based on the usage processing busyness of the inspection module, and the fault processing duration threshold of the inspection module is determined by the compensation duration and the basic processing duration threshold.
[0066] In another embodiment, the method for determining the fault processing time threshold of the inspection module is:
[0067] Determine the number of users of the inspection module at different times based on the usage data of the inspection module, and determine whether the number of times when the number of users is greater than a preset number of users meets the requirement. If so, proceed to the next step; if not, determine the fault processing time threshold of the inspection module based on the preset time;
[0068] Obtaining the usage time of different users of the inspection module, and selecting users whose usage time is longer than a preset usage time as screening users, and determining whether the number of the screened users meets the requirement; if so, proceeding to the next step; if not, determining a fault handling time threshold of the inspection module based on the preset time;
[0069] Obtaining the usage time of different users and determining the usage processing busyness of the inspection module in combination with the number of users whose usage time exceeds the preset usage time, and judging whether the usage processing busyness of the inspection module meets the requirements; if so, proceeding to the next step; if not, determining the fault processing time threshold of the inspection module based on the preset time;
[0070] The basic processing time threshold of the inspection module is determined based on the number of people using the inspection module at different times and the number of times when the number of people using the inspection module is greater than the preset number of people using the inspection module. The fault processing time threshold of the inspection module is determined by the usage processing busyness of the inspection module and the basic processing time threshold.
[0071] In another embodiment, the method for determining the fault processing time threshold of the inspection module is:
[0072] S21 determines the number of users of the inspection module at different times based on the usage data of the inspection module, and determines whether there is a time when the number of users is greater than the preset number of users. If so, proceed to step S23; if not, proceed to the next step;
[0073] S22 obtains the usage time of different users of the inspection module and determines whether there is a user whose usage time is longer than a preset usage time. If so, proceeds to the next step; if not, determines a fault handling time threshold of the inspection module based on a second preset time.
[0074] S23 determines the moment when the number of users is greater than the preset number of users as the screening moment, and determines the user busyness of the screening moment according to the number of screening moments and the number of users at the screening moment, and judges whether the user busyness of the screening moment meets the requirement. If so, proceeds to the next step; if not, determines the fault processing time threshold of the inspection module based on the preset time.
[0075] S24 obtains the usage time of different users and determines the usage processing busyness of the inspection module based on the number of users whose usage time exceeds the preset usage time, and judges whether the usage processing busyness of the inspection module meets the requirements. If so, proceeds to the next step; if not, determines the fault processing time threshold of the inspection module based on the preset time;
[0076] S24 determines the basic processing time threshold of the inspection module based on the number of users of the inspection module at different times and the number of times when the number of users is greater than the preset number of users, and determines the fault processing time threshold of the inspection module by the usage processing busyness of the inspection module and the basic processing time threshold.
[0077] S3 obtains the inspection processing time of the inspection fault problem of the inspection module under different inspection times, and when it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements in combination with the fault processing time threshold of the inspection module, proceeds to the next step;
[0078] Further, determining that the inspection processing reliability of the automatic inspection strategy does not meet the requirements specifically includes:
[0079] According to the inspection processing time of the inspection fault problem of the inspection module under different inspection times and the fault processing time threshold, the inspection times for which the inspection processing time of different inspection modules does not meet the fault processing time threshold are determined and used as the problem inspection times;
[0080] The number of inspection problems handled by different inspection modules is determined by the number of inspection problems of different inspection modules and the deviation between the inspection processing time of different problem inspection times and the fault processing time threshold;
[0081] The inspection processing reliability of the automatic inspection strategy is determined based on the inspection problem evaluation amounts of different inspection modules, and whether the inspection processing reliability of the automatic inspection strategy meets the requirements is determined in combination with a preset reliability threshold.
[0082] Specifically, when the inspection processing reliability is less than the preset reliability threshold, it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirement.
[0083] In another embodiment, determining that the inspection processing reliability of the automatic inspection strategy does not meet the requirements specifically includes:
[0084] According to the inspection processing time of the inspection fault problem of the inspection module under different inspection times and the fault processing time threshold, the inspection times for which the inspection processing time of different inspection modules does not meet the fault processing time threshold are determined, and used as the problem inspection times, and it is judged whether the problem inspection times meet the requirements. If so, it is determined that the inspection processing reliability of the automatic inspection strategy meets the requirements. If not, proceed to the next step;
[0085] Determine whether the number of inspection modules with problematic inspection times meets the requirement. If so, proceed to the next step. If not, determine that the inspection processing reliability of the automatic inspection strategy does not meet the requirement.
[0086] The inspection module with the problem inspection number is regarded as the problem inspection module, and whether the number of the problem inspection modules with the problem inspection number greater than the preset inspection number threshold meets the requirement is determined. If so, the next step is entered; if not, it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirement;
[0087] The number of problem inspections of different inspection modules and the deviation of the inspection processing time of different problem inspection times from the fault processing time threshold are used to determine the number of inspection processing problems of different inspection modules, and whether the number of inspection modules whose inspection processing problem quantities do not meet the requirements meets the requirements. If so, proceed to the next step. If not, it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements.
[0088] The inspection processing reliability of the automatic inspection strategy is determined based on the inspection problem evaluation amounts of different inspection modules, and whether the inspection processing reliability of the automatic inspection strategy meets the requirements is determined in combination with a preset reliability threshold.
[0089] Specifically, when the inspection processing reliability of the automatic inspection strategy meets the requirement, it is determined not to perform optimization adjustment of the automatic inspection strategy.
[0090] S4 optimizes and adjusts the automatic inspection strategy based on the inspection processing time and fault processing time threshold of the inspection fault problem at different inspection times of different inspection modules.
[0091] Furthermore, the automatic inspection strategy is optimized and adjusted, specifically including:
[0092] Determine the comprehensive deviation of the inspection time of different inspection modules based on the inspection processing time of the inspection fault problem under different inspection times of different inspection modules and the deviation of the fault processing time threshold;
[0093] The adjustment results of the inspection processing sequence of different inspection modules in the automatic inspection strategy are determined based on the comprehensive deviation of the inspection duration, and the automatic inspection strategy is optimized and adjusted according to the adjustment results. Example
[0094] On the other hand, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-mentioned method for automatically generating inspection strategies for operation and maintenance management.
[0095] Through the above embodiments, the present application achieves the following technical effects:
[0096] 1. The fault processing time thresholds of different inspection modules are determined by the usage data of different inspection modules, thereby realizing the screening of inspection modules with higher inspection processing reliability from the perspective of the users and usage time of the inspection modules, and ensuring the processing reliability of the inspection modules by adjusting the fault processing time thresholds of the inspection modules.
[0097] 2. According to the inspection processing time of the inspection failure problem of the inspection module under different inspection times and the fault processing time threshold of the inspection module, it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements. From the perspective of the inspection processing time of different inspection modules not meeting the requirements, an accurate evaluation of the inspection processing reliability of the automatic inspection strategy is achieved, which also lays the foundation for differentiated adjustments to the automatic inspection strategy and the operational reliability of the inspection module.
[0098] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.
[0099] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.
[0100] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.
Claims
1. A method for automatically generating inspection strategies for operation and maintenance management, characterized in that: Specifically include: Determine the inspection fault problem under different inspection times based on the inspection processing result of the automatic inspection strategy of the information system, and proceed to the next step when it is determined that the automatic inspection strategy needs to be adjusted according to the inspection fault problem; The business modules that match different inspection fault problems are determined based on the types of inspection fault problems, and used as inspection modules. The fault processing time thresholds of different inspection modules are determined based on the usage data of different inspection modules. Obtain the inspection processing time of the inspection fault problem of the inspection module under different inspection times, and when it is determined that the inspection processing reliability of the automatic inspection strategy does not meet the requirements in combination with the fault processing time threshold of the inspection module, proceed to the next step; Optimizing and adjusting the automatic inspection strategy based on the inspection processing time and fault processing time threshold of inspection fault problems under different inspection times of different inspection modules; Determining that the inspection processing reliability of the automatic inspection strategy does not meet the requirements specifically includes: According to the inspection processing time of the inspection fault problem of the inspection module under different inspection times and the fault processing time threshold, the inspection times for which the inspection processing time of different inspection modules does not meet the fault processing time threshold are determined and used as the problem inspection times; The number of inspection problems handled by different inspection modules is determined by the number of inspection problems of different inspection modules and the deviation between the inspection processing time of different problem inspection times and the fault processing time threshold; Determine the inspection processing reliability of the automatic inspection strategy based on the inspection problem evaluation amounts of different inspection modules, and determine whether the inspection processing reliability of the automatic inspection strategy meets the requirements in combination with a preset reliability threshold; Optimizing and adjusting the automatic inspection strategy includes: Determine the comprehensive deviation of the inspection time of different inspection modules based on the inspection processing time of the inspection fault problem under different inspection times of different inspection modules and the deviation of the fault processing time threshold; The adjustment results of the inspection processing sequence of different inspection modules in the automatic inspection strategy are determined based on the comprehensive deviation of the inspection duration, and the automatic inspection strategy is optimized and adjusted according to the adjustment results.
2. The method for automatically generating inspection strategies for operation and maintenance management according to claim 1, characterized in that: The inspection fault problem includes the problem type of the inspection fault problem and a matching business module.
3. The method for automatically generating inspection strategies for operation and maintenance management according to claim 1, wherein: Determining the need to adjust the automatic inspection strategy based on the inspection fault problem specifically includes: The number of inspections with inspection failures is used as the number of fault inspections, and the basic problem evaluation amount of the automatic inspection strategy is determined based on the number of fault inspections and the proportion of the number of historical inspections; Obtain the number of inspection fault problems of different problem types with different fault inspection times, and determine the inspection problem evaluation quantity with different fault inspection times based on the number of business modules matching different inspection fault problems; The basic problem evaluation amount of the automatic inspection strategy is corrected by the inspection problem evaluation amounts of different fault inspection times to obtain a comprehensive problem evaluation amount, and based on the comprehensive problem evaluation amount, it is determined whether the automatic inspection strategy needs to be adjusted.
4. The method for automatically generating inspection strategies for operation and maintenance management according to claim 3, characterized in that: Determining whether to adjust the automatic inspection strategy based on the comprehensive problem evaluation amount specifically includes: When the comprehensive problem evaluation amount does not meet the requirement, it is determined that the automatic inspection strategy needs to be adjusted.
5. The method for automatically generating inspection strategies for operation and maintenance management according to claim 1, wherein: The usage data includes the number of users of the inspection module and the usage time of different users.
6. The method for automatically generating inspection strategies for operation and maintenance management according to claim 1, wherein: The method for determining the fault processing time threshold of the inspection module is as follows: Determining the number of users of the inspection module at different times based on usage data of the inspection module, and determining a basic processing time threshold of the inspection module based on the number of users of the inspection module at different times and the number of times when the number of users is greater than a preset number of users; Obtaining the usage time of different users and determining the usage processing busyness of the inspection module based on the number of users whose usage time is longer than the preset usage time; The fault processing time threshold of the inspection module is determined according to the usage processing busyness of the inspection module and the basic processing time threshold.
7. The method for automatically generating inspection strategies for operation and maintenance management according to claim 6, characterized in that: Determining the fault processing time threshold of the inspection module according to the usage processing busyness of the inspection module and the basic processing time threshold specifically includes: The compensation duration of the inspection module is determined based on the usage processing busyness of the inspection module, and the fault processing duration threshold of the inspection module is determined by the compensation duration and the basic processing duration threshold.
8. The method for automatically generating inspection strategies for operation and maintenance management according to claim 1, wherein: When the inspection process reliability is less than the preset reliability threshold, it is determined that the inspection process reliability of the automatic inspection strategy does not meet the requirement.
9. A computer system comprising: A memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that when the processor runs the computer program, it executes a method for automatically generating inspection strategies for operation and maintenance management as described in any one of claims 1-8.
Citation Information
Patent Citations
Equipment inspection method and device, electronic equipment and storage medium
CN117315809A
Base station operation and maintenance management method and system
CN117479201A