A Smart Operation and Maintenance Management Method and System in the Information Technology Application Innovation Environment

By evaluating and distinguishing the importance of data processing equipment in the information innovation environment, and determining the number and type of data transfer terminals based on the equipment situation, the problems of low operation and maintenance processing efficiency and troubleshooting efficiency of different equipment are solved, and efficient and accurate operation and maintenance data processing is achieved.

CN116743814BActive Publication Date: 2025-06-17STATE GRID HENAN INFORMATION & TELECOMM CO +2
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Patent Information

Application Number
CN202310827863.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-07
Publication Date
2025-06-17
Estimated Expiration
2043-07-07

AI Technical Summary

Technical Problem

In the information innovation environment, due to the differences in the underlying protocols and hardware of different data processing equipment, it is difficult for a unified operation and maintenance processing terminal to effectively improve operation and maintenance processing efficiency and troubleshooting efficiency. At the same time, there are large differences in the data processing conditions and power business types of different equipment, making it difficult to achieve efficient and accurate operation and maintenance data processing.

Method used

By evaluating the importance of the processing business type, grid topology level and data volume of the data processing equipment, determining the core data equipment, and obtaining its operation and maintenance data through the operation and maintenance terminal. At the same time, non-core equipment is regarded as general data equipment, and the number and type of data transfer terminals are determined based on their number, data transmission protocol and processing capabilities of the operation and maintenance terminals to achieve efficient analysis and transmission of operation and maintenance data.

Benefits of technology

By distinguishing the importance of different data processing equipment and determining the number and type of data transfer terminals according to the specific situation of the equipment, the operation and maintenance efficiency is improved, and the efficient processing of important equipment is ensured. At the same time, the operation life and hidden dangers of the equipment are taken into account, which further improves the efficiency of operation and maintenance data processing.

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Abstract

The present invention provides a smart operation and maintenance management method and system in the Xinchuang environment, belonging to the technical field of security management. Specifically, it includes: regarding the data processing devices except for the core data devices as general data devices, determining the set number of data transfer terminals based on the number of the general data devices, the number of data transmission protocols, and the data processing capabilities of the operation and maintenance terminals, determining the number of the data transfer terminals according to the set number, and parsing and transmitting the operation and maintenance data of the general data devices to the operation and maintenance terminals through the data transfer terminals, thereby further realizing the efficient operation and maintenance processing of the data processing devices.
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Description

Technical Field

[0001] The present invention belongs to the technical field of operation and maintenance management, and particularly relates to a smart operation and maintenance management method and system in the information technology application innovation environment. Background Art

[0002] In order to ensure the security and reliability of data transmission, the idea of accelerating the rapid development of the information technology application innovation industry (i.e., the information technology application innovation industry) has become increasingly popular, which has promoted the localization substitution of information technology data processing equipment in the information industry. However, at the same time, due to the compatibility issues of different information technology data processing equipment, how to achieve the operation and maintenance management of information technology data processing equipment in the information technology application innovation environment has become a technical problem to be solved urgently.

[0003] In order to achieve the operation and maintenance management of information technology data processing equipment in the information technology application innovation environment, in the invention patent CN111476381A "A Method and System for Implementing Remote Operation and Maintenance Services in the Information Technology Application Innovation Environment", the operation monitoring of hardware, software, data interaction, etc. is used as the monitoring basis, and compared with normal values. If abnormal parameters occur, the policy set is automatically called, the data retrieval and analysis are carried out according to the policy set corresponding to the corresponding fault, and after finding the location of the problem node, it is automatically repaired according to the corresponding solution strategy. However, there are the following technical problems:

[0004] 1. In the information technology application innovation environment, due to the large differences in the underlying protocols and underlying hardware of different data processing devices, if the above factors are not considered and a unified operation and maintenance processing terminal is used, the operation and maintenance processing efficiency and fault troubleshooting efficiency of data processing devices will be affected to a certain extent.

[0005] 2. In the information technology application innovation environment, due to the large differences in the data processing situations of different data processing devices within a unit time and the large differences in the corresponding power service types of different data processing devices, if the above factors cannot be considered, it is impossible to achieve the efficient and accurate processing of operation and maintenance data of data processing devices.

[0006] In view of the above technical problems, the present invention provides a smart operation and maintenance management method and system in the information technology application innovation environment. Summary of the Invention

[0007] To achieve the object of the present invention, the present invention adopts the following technical solutions:

[0008] According to one aspect of the present invention, a smart operation and maintenance management method in the information technology application innovation environment is provided.

[0009] A smart operation and maintenance management method in the information technology application innovation environment, characterized in that it specifically includes:

[0010] S11 determines the importance evaluation value and the core data device based on the processing service type of the data processing device, the grid topology level corresponding to the processed data, and the data volume of the processed data, and obtains the operation and maintenance data of the core data device through the operation and maintenance terminal;

[0011] S12 takes the data processing devices excluding the core data device as general data devices, determines the basic quantity of the data transfer terminal based on the quantity of the general data devices, the quantity of data transfer protocols, and the data processing capacity of the operation and maintenance terminal, determines whether the basic quantity meets the requirements by the sum of the importance evaluation values of the general data devices. If so, takes the basic quantity as the set quantity and proceeds to step S14; if not, proceeds to step S13;

[0012] S13 determines the data devices to be screened according to the operation years of the general data devices, and corrects the basic quantity to obtain the set quantity based on the sum and average value of the importance evaluation values of the general data devices, the quantity and operation years of the screened data devices;

[0013] S14 determines the quantity of the data transfer terminal based on the set quantity, and analyzes and transmits the operation and maintenance data of the general data devices to the operation and maintenance terminal through the data transfer terminal.

[0014] Determining the importance evaluation value and the core data device through the processing service type of the data processing device, the grid topology level corresponding to the processed data, and the data volume of the processed data, thus realizing the differentiation of the importance of different data processing devices from three perspectives of service type, topology level, and data volume, and ensuring the operation and maintenance efficiency of data processing devices with higher importance.

[0015] Determining the basic quantity of the data transfer terminal based on the quantity of the general data devices, the quantity of data transfer protocols, and the data processing capacity of the operation and maintenance terminal, taking into account both the processing capacity of the operation and maintenance terminal and the processing complexity from the aspects of quantity and data transfer protocol, thus ensuring the comprehensiveness of the evaluation of the quantity of the data transfer terminal.

[0016] Correcting the basic quantity to obtain the set quantity based on the sum and average value of the importance evaluation values of the general data devices, the quantity and operation years of the screened data devices, thus realizing the determination of the set quantity from multiple perspectives, ensuring the processing efficiency of general data devices with higher importance, and at the same time considering the equipment hidden danger problems of the screened data devices with different operation years, further ensuring the processing efficiency of operation and maintenance data.

[0017] On the other hand, an embodiment of the present application provides a computer system, including: a memory and a processor connected by communication, and a computer program stored on the memory and capable of running on the processor, wherein: when the processor runs the computer program, it executes the above-mentioned intelligent operation and maintenance management method in a Xinchuang environment.

[0018] On the other hand, the present invention provides a storage medium, on which a computer program is stored. When the computer program is executed in a computer, the computer is made to execute the above-mentioned intelligent operation and maintenance management method in a Xinchuang environment.

[0019] Other features and advantages will be described in the following specification, and, in part, will become apparent from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention are achieved and obtained by the structures specifically pointed out in the specification and the drawings.

[0020] To make the above-mentioned objectives, features, and advantages of the present invention more obvious and understandable, the following specifically enumerates preferred embodiments and, in conjunction with the accompanying drawings, details are described as follows. Description of the Drawings

[0021] By referring to the drawings and describing in detail its exemplary embodiments, the above and other features and advantages of the present invention will become more obvious.

[0022] Figure 1 is a flowchart of an intelligent operation and maintenance management method in a Xinchuang environment according to Embodiment 1.

[0023] Figure 2 is a flowchart of a method for determining the basic quantity of a data transfer terminal according to Embodiment 1.

[0024] Figure 3 is a block diagram of a computer system according to Embodiment 2. Detailed Embodiments

[0025] Now, exemplary embodiments will be described more fully with reference to the drawings. However, the exemplary embodiments can be implemented in various forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that the present invention will be thorough and complete, and will fully convey the concept of the exemplary embodiments to those skilled in the art. The same reference numerals in the drawings denote the same or similar structures, and thus their detailed descriptions will be omitted.

[0026] The terms "a", "an", "the", and "said" are used to indicate the presence of one or more elements / components / etc.; the terms "comprising" and "having" are used to mean an open inclusion and mean that there may be additional elements / components / etc. in addition to the listed elements / components / etc.

[0027] Example 1

[0028] To solve the above problems, according to one aspect of the present invention, as Figure 1 shown, a smart operation and maintenance management method in the information technology innovation environment is provided, which is characterized in that it specifically includes:

[0029] S11 Determine the importance evaluation value and the core data device through the processing service type of the data processing device, the grid topology level corresponding to the processed data, and the data volume of the processed data, and obtain the operation and maintenance data of the core data device through the operation and maintenance terminal;

[0030] It should be noted that the processing service type includes, but is not limited to, fault type diagnosis of electrical equipment, communication data parsing of communication equipment, and operation data detection of electrical equipment.

[0031] It can be understood that the grid topology level is determined according to the voltage level of the electrical equipment corresponding to the data processed by the data processing device.

[0032] Specifically, the specific steps for determining the importance evaluation value are as follows:

[0033] S21 Obtain the grid topology level corresponding to the processed data of the data processing device, and determine whether the grid topology level belongs to a specific grid topology level. If so, go to step S22; if not, go to step S24;

[0034] S22 Determine whether the data processing device is a core data device according to the processing service type of the data processing device. If so, determine that the data processing device is a core data device; if not, go to step S23;

[0035] S23 Divide the unit time into peak data volume processing time and low peak data volume processing time according to the data volume of the data processed by the data processing device in the unit time, and determine the data volume evaluation value of the data processing device through the duration, proportion, and average value of the peak data volume processing time of the data processing device within the set time, and the duration, proportion, and average value of the low peak data volume processing time, and determine whether the data processing device is a core data device through the data volume evaluation value. If so, determine that the data processing device is a core data device; if not, go to step S24;

[0036] S24 Determine the importance evaluation value of the data processing device according to the data volume evaluation value, processing service type, and grid topology level corresponding to the processed data of the data processing device.

[0037] Further, divide the unit time into peak data volume processing time and off-peak data volume processing time according to the data volume of the data processed by the data processing device per unit time, specifically including:

[0038] When the data volume of the data processed by the data processing device per unit time is greater than the preset data volume threshold, determine that the unit time is the peak data volume processing time;

[0039] When the data volume of the data processed by the data processing device per unit time is not greater than the preset data volume threshold, determine that the unit time is the off-peak data volume processing time.

[0040] Further, when the importance evaluation value of the data processing device is greater than the preset importance threshold, use the data processing device as the core data device.

[0041] Determine the importance evaluation value and the core data device through the processing service type of the data processing device, the power grid topology level corresponding to the processed data, and the data volume of the processed data, thereby realizing the differentiation of the importance of different data processing devices from three perspectives of service type, topology level, and data volume, and ensuring the operation and maintenance efficiency of data processing devices with relatively high importance.

[0042] S12 Use the data processing devices excluding the core data devices as general data devices, and determine the basic quantity of the data transfer terminal through the quantity of the general data devices, the quantity of data transfer protocols, and the data processing capacity of the operation and maintenance terminal. Determine whether the basic quantity meets the requirements through the sum of the importance evaluation values of the general data devices. If so, use the basic quantity as the set quantity and enter step S14; if not, enter step S13;

[0043] It can be understood that as Figure 2 shown, the method for determining the basic quantity of the data transfer terminal is:

[0044] S31 Determine the data processing capacity of the operation and maintenance terminal through the hardware configuration of the operation and maintenance terminal, and determine the maximum quantity threshold of the data transfer terminal through the data processing capacity of the operation and maintenance terminal, the quantity of the core devices, and the data volume evaluation value;

[0045] S32 Determine whether to use the maximum quantity threshold as the basic quantity through the quantity of the general data devices. If so, use the maximum quantity threshold as the basic quantity of the data transfer terminal; if not, enter the next step;

[0046] S33 determines a complex transmission protocol based on the type of the data transmission protocol of the operation and maintenance data of the general data device, and determines the complex transmission protocol through the data parsing complexity of the data transmission protocol of the operation and maintenance data. The transmission protocol evaluation value of the general data device is determined based on the type of the data transmission protocol, the number of data transmission protocols, the number of complex transmission protocols, and the data parsing complexity. It is determined whether to use the maximum quantity threshold as the base quantity based on the transmission protocol evaluation value. If so, the maximum quantity threshold is used as the base quantity of the data transfer terminal. If not, the next step is entered;

[0047] S34 modifies the maximum quantity threshold based on the transmission protocol evaluation value and the quantity of the general data device to obtain the base quantity of the data transfer terminal.

[0048] Further, it is determined whether the base quantity meets the requirements based on the sum of the importance evaluation values of the general data devices, specifically including:

[0049] When the sum of the importance evaluation values of the general data devices is greater than the preset value, it is determined that the base quantity does not meet the requirements.

[0050] The base quantity of the data transfer terminal is determined based on the quantity of the general data device, the number of data transmission protocols, and the data processing capacity of the operation and maintenance terminal, taking into account both the processing capacity of the operation and maintenance terminal and the processing complexity from the perspectives of quantity and data transmission protocol, thus ensuring the comprehensiveness of the evaluation of the quantity of the data transfer terminal.

[0051] S13 determines the data devices to be screened based on the operation years of the general data device, and modifies the base quantity to obtain the set quantity based on the sum and average value of the importance evaluation values of the general data device, the quantity of the screened data devices, and the operation years;

[0052] It can be understood that determining the data devices to be screened based on the operation years of the general data device specifically includes:

[0053] When the operation years of the general data device are greater than the preset years threshold, it is determined that the general data device is a data device to be screened.

[0054] Specifically, an example is given. The specific steps for determining the set quantity are as follows:

[0055] S41 determines whether the base quantity of the data transfer terminal is the maximum quantity threshold. If so, the base quantity of the data transfer terminal is used as the set quantity. If not, the next step is entered;

[0056] S42 determines the comprehensive importance evaluation value of the general data devices through the sum and mean of the importance evaluation values of the general data devices, the median of the importance evaluation values of the general data devices, and the number of general data devices whose importance evaluation values are greater than the median, and determines whether it is necessary to correct the basic quantity through the comprehensive importance evaluation value of the general data devices. If so, it proceeds to step S45; if not, it proceeds to step S43;

[0057] S43 screens high-domestication-rate data devices through the domestication rate of the general data devices, determines un-verified data devices through the service life of the high-domestication-rate data devices, and determines the stability evaluation value of the general data devices through the number and domestication rate of the un-verified data devices, the number and domestication rate of the high-domestication-rate data devices, and determines whether it is necessary to correct the basic quantity through the stability evaluation value of the general data devices. If so, it proceeds to step S45; if not, it proceeds to step S44;

[0058] S44 determines the usage stability evaluation value of the general data devices through the service life of the general data devices and combines the service life and quantity of the screened data devices, and determines whether it is necessary to correct the basic quantity through the usage stability evaluation value of the general data devices. If so, it proceeds to step S45; if not, the basic quantity of the data transfer terminal is taken as the set quantity;

[0059] S45 determines the corrected quantity through the usage stability evaluation value, stability evaluation value, and comprehensive importance evaluation value of the general data devices, and determines the set quantity through the basic quantity, corrected quantity, and maximum quantity threshold of the data transfer terminal.

[0060] The basic quantity is corrected through the sum and mean of the importance evaluation values of the general data devices, the quantity and operation years of the screened data devices to obtain the set quantity, thus realizing the determination of the set quantity from multiple perspectives, which not only ensures the processing efficiency of general data devices with higher importance, but also takes into account the potential equipment problems of the screened data devices with different operation years, further ensuring the processing efficiency of operation and maintenance data.

[0061] S14 determines the quantity of the data transfer terminal through the set quantity, and the operation and maintenance data of the general data devices are parsed and transmitted to the operation and maintenance terminal through the data transfer terminal.

[0062] Embodiment 2

[0063] As Figure 3As shown in the figure, an embodiment of the present application provides a computer system, including: a memory and a processor connected by communication, and a computer program stored on the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-mentioned intelligent operation and maintenance management method in a Xinchuang environment.

[0064] Embodiment 3

[0065] The present invention provides a storage medium, on which a computer program is stored. When the computer program is executed on a computer, the computer is made to execute the above-mentioned intelligent operation and maintenance management method in a Xinchuang environment.

[0066] Taking the above ideal embodiment according to the present invention as an inspiration, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.

Claims

1. A smart operation and maintenance management method in an information technology application innovation environment, characterized in that Specifically, it includes: S11 determines the importance evaluation value and the core data device through the processing service type of the data processing device, the grid topology level corresponding to the processed data, and the data volume of the processed data, and obtains the operation and maintenance data of the core data device through the operation and maintenance terminal; S12 takes the data processing devices except the core data device as general data devices, and determines the basic quantity of the data transfer terminal through the quantity of the general data devices, the quantity of the data transfer protocols, and the data processing capacity of the operation and maintenance terminal. It determines whether the basic quantity meets the requirements by the sum of the importance evaluation values of the general data devices. If so, it takes the basic quantity as the set quantity and proceeds to step S14; if not, it proceeds to step S13; S13 determines the data devices to be screened according to the operation years of the general data devices, and corrects the basic quantity to obtain the set quantity through the sum and average value of the importance evaluation values of the general data devices, the quantity and operation years of the screened data devices; S14 determines the quantity of the data transfer terminal through the set quantity, and analyzes and transmits the operation and maintenance data of the general data devices to the operation and maintenance terminal through the data transfer terminal.

2. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that The processing service type includes, but is not limited to, fault type diagnosis of electrical equipment, communication data analysis of communication equipment, and operation data detection of electrical equipment.

3. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that The grid topology level is determined according to the voltage level of the electrical equipment corresponding to the data processed by the data processing device.

4. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that The specific steps for determining the importance evaluation value are as follows: S21 obtains the grid topology level corresponding to the data processed by the data processing device, and determines whether the determined grid topology level belongs to a specific grid topology level. If so, it proceeds to step S22; if not, it proceeds to step S24; S22 determines whether the data processing device is a core data device according to the processing service type of the data processing device. If so, it determines the data processing device as a core data device; if not, it proceeds to step S23; S23 divides the unit time into peak data volume processing time and low peak data volume processing time according to the data volume of the data processed by the data processing device in the unit time, and determines the data volume evaluation value of the data processing device through the duration, proportion, and average value of the data volume in the peak data volume processing time of the data processing device within the set time, and the duration, proportion, and average value of the data volume in the low peak data volume processing time. It determines whether the data processing device is a core data device through the data volume evaluation value. If so, it determines the data processing device as a core data device; if not, it proceeds to step S24; S24 determines the importance evaluation value of the data processing device according to the data volume evaluation value, processing service type, and grid topology level corresponding to the data processed by the data processing device.

5. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that Dividing the unit time into peak data volume processing time and low peak data volume processing time according to the data volume of the data processed by the data processing device in the unit time specifically includes: When the amount of data processed by the data processing device per unit time is greater than the preset data volume threshold, it is determined that the unit time is the peak data volume processing time; When the amount of data processed by the data processing device per unit time is not greater than the preset data volume threshold, it is determined that the unit time is the off-peak data volume processing time.

6. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that When the importance evaluation value of the data processing device is greater than the preset importance threshold, the data processing device is regarded as a core data device.

7. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that The method for determining the basic quantity of the data transfer terminal is as follows: Determine the data processing capacity of the operation and maintenance terminal through the hardware configuration of the operation and maintenance terminal, and determine the maximum quantity threshold of the data transfer terminal through the data processing capacity of the operation and maintenance terminal, the quantity of the core data devices, and the data volume evaluation value; Determine whether to use the maximum quantity threshold as the basic quantity through the quantity of the general data devices. If so, use the maximum quantity threshold as the basic quantity of the data transfer terminal. If not, proceed to the next step; Determine the complex transfer protocol through the type of the data transfer protocol of the operation and maintenance data of the general data devices and the data parsing complexity of the data transfer protocol of the operation and maintenance data. Determine the transfer protocol evaluation value of the general data devices through the type of the data transfer protocol, the quantity of the data transfer protocols, the quantity of the complex transfer protocols, and the data parsing complexity, and determine whether to use the maximum quantity threshold as the basic quantity through the transfer protocol evaluation value. If so, use the maximum quantity threshold as the basic quantity of the data transfer terminal. If not, proceed to the next step; Modify the maximum quantity threshold through the transfer protocol evaluation value and quantity of the general data devices to obtain the basic quantity of the data transfer terminal.

8. The smart operation and maintenance management method in an information technology application innovation environment according to claim 1, characterized in that Determine whether the basic quantity meets the requirements through the sum of the importance evaluation values of the general data devices, specifically including: When the sum of the importance evaluation values of the general data devices is greater than the preset value, it is determined that the basic quantity does not meet the requirements.

9. A computer system, comprising: A memory and a processor in communication connection, and a computer program stored on the memory and capable of running on the processor, wherein: when the processor runs the computer program, it executes the intelligent operation and maintenance management method in a Xinchuang environment according to any one of claims 1-8.

10. A storage medium, on which a computer program is stored, and when the computer program is executed in a computer, the computer is made to execute the smart operation and maintenance management method in an information technology application innovation environment according to any one of claims 1-8.

Citation Information

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