Security comprehensive management method and system for energy station
By conducting a comprehensive assessment of the comprehensive security management methods of energy sites, the safety, reliability, timeliness and compliance indexes are calculated, and the problem that existing technology cannot evaluate security management methods is solved, and effective management and upgrading of the energy site security system is achieved.
Patent Information
- Application Number
- CN202411985055.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing technology lacks a clear judgment mechanism and cannot conduct a comprehensive and accurate assessment of the comprehensive security management methods of energy stations to ensure that they meet actual security needs.
By collecting monitoring and recording information of the target energy site, security related recording data are extracted, including site monitoring and recording data, security operation recording data and regulatory characteristics data, site security index, security reliability index, security timeliness index and security compliance index, combined with these indexes, calculate security management compliance index, and carry out corresponding system upgrades.
A comprehensive and accurate assessment of the comprehensive security management of energy stations has been achieved, ensuring that it meets actual security needs, and improving the security, reliability and timeliness of the security system.
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Figure CN120013319A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of security management technology, and in particular, to a comprehensive security management method and system for energy sites. Background Art
[0002] The safety management of energy sites is of vital importance, and their comprehensive security management methods need to meet multiple needs. However, there is currently a lack of a clear judgment mechanism that can comprehensively and accurately evaluate existing comprehensive security management methods to ensure that they meet the actual safety needs of energy sites.
[0003] In view of the above problems, effective technical solutions are urgently needed. Summary of the invention
[0004] The purpose of the present application is to provide a method and system for comprehensive security management of energy sites. The method and system can collect monitoring record information of the target energy site within a preset time period and extract security-related record data, including site monitoring record data, security operation record data and laws and regulations characteristic data. The site monitoring record data and security operation record data are processed to obtain a site safety index. The security operation record data are processed to obtain a security reliability index. The security operation record data are processed to obtain a security timeliness index. The laws and regulations characteristic data are processed to obtain a site security compliance index. The site safety index, security reliability index and security timeliness index are combined for processing to obtain a site security management compliance index. The corresponding security system is upgraded to realize a technology for comprehensive security management of energy sites.
[0005] The present application also provides a comprehensive security management method for energy sites, comprising the following steps:
[0006] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0007] Processing the site monitoring record data and security operation record data to obtain a site security index;
[0008] Processing the security operation record data to obtain a security reliability index;
[0009] Processing the security operation record data to obtain a security timeliness index;
[0010] Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index;
[0011] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, processing is performed to obtain a site security management compliance index, and the corresponding security system is upgraded.
[0012] Optionally, in the integrated security management method for energy sites described in the present application, the monitoring record information of the target energy site within a preset time period is collected, and security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including:
[0013] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0014] The site monitoring record data includes site intrusion event record data and site security accident record data;
[0015] The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data;
[0016] The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
[0017] Optionally, in the integrated security management method for energy sites described in the present application, the processing of the site monitoring record data and the security operation record data to obtain the site security index includes:
[0018] Extract and process the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data;
[0019] Extract and process the safety accident record data of the site to obtain safety accident incidence rate data and personnel casualty rate data;
[0020] Extract and process the security equipment operation record data to obtain equipment failure safety accident rate data;
[0021] The site safety index is obtained by processing the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data and the casualty rate data in combination with the equipment failure safety accident rate data.
[0022] Optionally, in the integrated security management method for energy sites described in the present application, the processing according to the security operation record data to obtain the security reliability index includes:
[0023] Extracting and processing the security system operation record data to obtain security system availability data;
[0024] Extract and process the security equipment operation record data to obtain the equipment mean time between failures and the equipment mean time to repair data;
[0025] The security system availability data is processed in combination with the equipment mean time between failures data and the equipment mean time to repair data to obtain a security reliability index.
[0026] Optionally, in the integrated security management method for energy sites described in the present application, the processing according to the security operation record data to obtain the security timeliness index includes:
[0027] Extract and process the emergency response record data to obtain average value data of emergency response time;
[0028] Extract and process the hidden danger record data to obtain hidden danger inspection cycle data and hidden danger inspection coverage rate data;
[0029] The average value data of the emergency response time is processed in combination with the hidden danger inspection cycle data and the hidden danger inspection coverage rate data to obtain a security timeliness index.
[0030] Optionally, in the comprehensive security management method for energy sites described in the present application, the site security index, the security reliability index and the security timeliness index are processed in combination with the site security compliance index to obtain a site security management compliance index, and a corresponding security system upgrade is performed, including:
[0031] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, a site security management compliance index is obtained;
[0032] Comparing the site security management compliance index with a preset site security management compliance threshold to obtain a threshold comparison result;
[0033] Determining whether the comprehensive security management of the target energy site meets the site requirements according to the threshold comparison result;
[0034] If the comprehensive security management of the target energy site does not meet the site requirements, a corresponding system upgrade is performed on the comprehensive security management of the target energy site.
[0035] In a second aspect, the present application provides a security integrated management system for an energy site, the system comprising: a memory and a processor, the memory comprising a program of a security integrated management method for an energy site, the program of the security integrated management method for an energy site being executed by the processor to implement the following steps:
[0036] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0037] Processing the site monitoring record data and security operation record data to obtain a site security index;
[0038] Processing the security operation record data to obtain a security reliability index;
[0039] Processing the security operation record data to obtain a security timeliness index;
[0040] Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index;
[0041] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, processing is performed to obtain a site security management compliance index, and the corresponding security system is upgraded.
[0042] Optionally, in the integrated security management system for energy sites described in the present application, the monitoring record information of the target energy site within a preset time period is collected, and the security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including:
[0043] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0044] The site monitoring record data includes site intrusion event record data and site security accident record data;
[0045] The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data;
[0046] The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
[0047] Optionally, in the integrated security management system for energy sites described in the present application, the processing of the site monitoring record data and the security operation record data to obtain the site security index includes:
[0048] Extract and process the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data;
[0049] Extract and process the safety accident record data of the site to obtain safety accident incidence rate data and personnel casualty rate data;
[0050] Extract and process the security equipment operation record data to obtain equipment failure safety accident rate data;
[0051] The site safety index is obtained by processing the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data and the casualty rate data in combination with the equipment failure safety accident rate data.
[0052] Optionally, in the integrated security management system for energy sites described in the present application, the processing according to the security operation record data to obtain the security reliability index includes:
[0053] Extracting and processing the security system operation record data to obtain security system availability data;
[0054] Extract and process the security equipment operation record data to obtain the equipment mean time between failures and the equipment mean time to repair data;
[0055] The security system availability data is processed in combination with the equipment mean time between failures data and the equipment mean time to repair data to obtain a security reliability index.
[0056] From the above, it can be seen that the comprehensive security management method and system for energy sites provided by the present application collects monitoring record information of the target energy site within a preset time period, and extracts security-related record data, including site monitoring record data, security operation record data, and laws and regulations characteristic data, processes the site monitoring record data and security operation record data to obtain a site safety index, processes the security operation record data to obtain a security reliability index, processes the security operation record data to obtain a security timeliness index, processes the laws and regulations characteristic data to obtain a site security compliance index, processes the site safety index, security reliability index, and security timeliness index in combination with the site security compliance index to obtain a site security management compliance index, and performs corresponding security system upgrades, thereby realizing a technology for comprehensive security management of energy sites.
[0057] Other features and advantages of the present application will be described in the following description, and partly become apparent from the description, or understood by practicing the embodiments of the present application. The purpose and other advantages of the present application can be realized and obtained by the structures specifically pointed out in the written description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0058] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments of the present application will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.
[0059] Figure 1 A flow chart of a comprehensive security management method for energy sites provided in an embodiment of the present application;
[0060] Figure 2 A flow chart of obtaining a site security index for a method for comprehensive security management of energy sites provided in an embodiment of the present application;
[0061] Figure 3 A flow chart of obtaining a security reliability index for a comprehensive security management method for energy sites provided in an embodiment of the present application;
[0062] Figure 4 A flow chart of obtaining a security timeliness index for a comprehensive security management method for energy sites provided in an embodiment of the present application. DETAILED DESCRIPTION
[0063] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. The components of the embodiments of the present application described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application claimed for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work belong to the scope of protection of the present application.
[0064] It should be noted that similar reference numerals and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. At the same time, in the description of this application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0065] Please refer to Figure 1 , Figure 1 The flowchart of the comprehensive security management method for energy sites in some embodiments of the present application. The comprehensive security management method for energy sites is used in terminal devices, such as computers, mobile terminals, etc. The comprehensive security management method for energy sites includes the following steps:
[0066] S11. Collect monitoring record information of the target energy site within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and legal and regulatory characteristic data;
[0067] S12, processing the site monitoring record data and the security operation record data to obtain a site security index;
[0068] S13, processing the security operation record data to obtain a security reliability index;
[0069] S14, processing the security operation record data to obtain a security timeliness index;
[0070] S15. Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index;
[0071] S16. Processing is performed according to the site safety index, security reliability index and security timeliness index in combination with the site security compliance index to obtain a site security management compliance index, and corresponding security system upgrades are performed.
[0072] It should be noted that the safety management of energy sites is of vital importance, and its comprehensive security management method needs to meet various requirements. However, there is currently a lack of a clear judgment mechanism that can comprehensively and accurately evaluate the existing comprehensive security management method to ensure that it meets the actual safety requirements of the energy site. Therefore, in this embodiment, first, by collecting the monitoring record information of the target energy site within a preset time period, and extracting security-related record data, including site monitoring record data, security operation record data, and legal and regulatory characteristic data, the site monitoring record data and security operation record data are processed to obtain the site security index, the security operation record data are processed to obtain the security reliability index, the security operation record data are processed to obtain the security timeliness index, the legal and regulatory characteristic data are processed to obtain the site security compliance index, the site security index, the security reliability index and the security timeliness index are processed in combination with the site security compliance index to obtain the site security management compliance index, and the corresponding security system is upgraded, thereby realizing the technology for comprehensive security management of energy sites.
[0073] According to an embodiment of the present invention, the monitoring record information of the target energy site within a preset time period is collected, and the security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including:
[0074] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0075] The site monitoring record data includes site intrusion event record data and site security accident record data;
[0076] The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data;
[0077] The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
[0078] It should be noted that in order to comprehensively and accurately evaluate whether the security protection of the security system meets actual needs, it is necessary to monitor the monitoring record information of the target energy site within a preset time period and extract security-related record data, including site monitoring record data, security operation record data and laws and regulations characteristic data. Among them, the site monitoring record data includes site intrusion event record data and site safety accident record data, the security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data, and the laws and regulations characteristic data includes safety law characteristic data and safety system characteristic data.
[0079] Please refer to Figure 2 , Figure 2 The flowchart of the method for comprehensive security management of energy sites in some embodiments of the present application is to obtain a site security index. According to an embodiment of the present invention, the site monitoring record data and security operation record data are processed to obtain the site security index, including:
[0080] S21, extracting and processing the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data;
[0081] S22, extracting and processing the site safety accident record data to obtain safety accident incidence rate data and casualty rate data;
[0082] S23, extracting and processing the security equipment operation record data to obtain equipment failure safety accident rate data;
[0083] S24. Process the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data, and the casualty rate data in combination with the equipment failure safety accident rate data to obtain a site safety index.
[0084] It should be noted that the security situation of the site is the most direct feedback on the protection capability of the security system. Therefore, the site intrusion event record data is extracted and processed to obtain the intrusion event rate data and the intrusion detection success rate data, where the intrusion event rate refers to the ratio of the number of illegal intrusions suffered by the energy site within a certain period of time (such as one year or one quarter) to the total operation time of the site, and the intrusion detection success rate refers to the percentage of the number of illegal intrusion behaviors (people or vehicles entering the site without authorization) successfully detected to the total number of intrusion behaviors actually occurring. The site safety accident record data is extracted and processed to obtain the safety accident rate data and the casualty rate data, where the safety accident rate refers to the ratio of the number of safety accidents such as fires, explosions, and leaks occurring in the energy site within a specific time range to the total operation time of the site, and the casualty rate refers to the ratio of the number of casualties caused by safety accidents occurring in the energy site to the total number of employees at the site. The security equipment operation record data is extracted and processed to obtain the equipment failure safety accident rate data, where the equipment failure safety accident rate refers to the ratio of the number of safety accidents caused by equipment failure to the total operation time of the equipment. Finally, the site security index is obtained by processing the above data;
[0085] The calculation formula of the site security index is:
[0086]
[0087] Among them, A x is the site security index, p m , o n They are intrusion event rate data and intrusion detection success rate data, respectively. b 、u v are the safety accident rate data and the casualty rate data, respectively. c is the equipment failure safety accident rate data, ε1, ε2, δ1 and δ2 are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0088] Please refer to Figure 3 , Figure 3 The flowchart of the security reliability index of the comprehensive security management method for energy sites in some embodiments of the present application is as follows. According to the embodiment of the present invention, the security reliability index is obtained by processing the security operation record data, including:
[0089] S31, extracting and processing the security system operation record data to obtain security system availability data;
[0090] S32, extracting and processing the security equipment operation record data to obtain the equipment mean time between failures data and the equipment mean time to repair data;
[0091] S33. Process the security system availability data in combination with the equipment mean time between failures data and equipment mean time to repair data to obtain a security reliability index.
[0092] It should be noted that, on the other hand, the reliability of the security system needs to be judged. Therefore, the security system operation record data is extracted and processed to obtain the security system availability data, where the security system availability refers to the ratio of the normal operation time of the security system to the total operation time within a certain period of time. The security equipment operation record data is extracted and processed to obtain the equipment mean time between failures and the equipment mean repair time data, where the equipment mean time between failures refers to the average working time of the security equipment between two adjacent failures, and the equipment mean repair time refers to the average time required for the equipment to resume normal operation after each failure. Then, the above data is processed to obtain the security reliability index;
[0093] The calculation formula of the security reliability index is:
[0094]
[0095] Among them, K k is the security reliability index, m p is the security system availability data, n o 、b i They are the equipment mean time between failures and the equipment mean time to repair data respectively; γ1, π1, and π2 are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0096] Please refer to Figure 4 , Figure 4 The flowchart of obtaining the security timeliness index of the security integrated management method for energy sites in some embodiments of the present application is as follows. According to an embodiment of the present invention, the security operation record data is processed to obtain the security timeliness index, including:
[0097] S41, extracting and processing the emergency response record data to obtain average value data of emergency response time;
[0098] S42, extracting and processing the hidden danger record data to obtain hidden danger inspection cycle data and hidden danger inspection coverage rate data;
[0099] S43. Processing is performed based on the average value data of the emergency response time in combination with the hidden danger inspection cycle data and the hidden danger inspection coverage rate data to obtain a security timeliness index.
[0100] It should be noted that for safety issues, whether the security system can respond in time and whether it can detect hidden dangers in real time is also an important part. Therefore, the emergency response record data is extracted and processed to obtain the average value data of the emergency response time, where the emergency response time refers to the time interval from the occurrence of a safety accident to the initiation of effective emergency measures. The hidden danger record data is extracted and processed to obtain the hidden danger investigation cycle data and hidden danger investigation coverage rate data, where the hidden danger investigation cycle refers to the time interval between two comprehensive hidden danger investigations; the coverage rate refers to the ratio of the areas and equipment actually inspected in the hidden danger investigation to the areas and equipment that should be inspected. Then, the above data is processed to obtain the security timeliness index;
[0101] The calculation formula of the security timeliness index is:
[0102]
[0103] Among them, S s is the security timeliness index, a q is the average value of emergency response time, d x 、f e They are the hidden danger inspection cycle data and the hidden danger inspection coverage data respectively; η and μ are the preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0104] According to an embodiment of the present invention, the site security index, the security reliability index and the security timeliness index are processed in combination with the site security compliance index to obtain a site security management compliance index, and a corresponding security system upgrade is performed, including:
[0105] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, a site security management compliance index is obtained;
[0106] Comparing the site security management compliance index with a preset site security management compliance threshold to obtain a threshold comparison result;
[0107] Determining whether the comprehensive security management of the target energy site meets the site requirements according to the threshold comparison result;
[0108] If the comprehensive security management of the target energy site does not meet the site requirements, a corresponding system upgrade is performed on the comprehensive security management of the target energy site.
[0109] It should be noted that the site security index, security reliability index and security timeliness index are processed in combination with the site security compliance index to obtain the site security management compliance index, which is then compared with the preset site security management compliance threshold to obtain the threshold comparison result. According to the threshold comparison result, it is judged whether the security comprehensive management of the target energy site meets the site requirements. If the security comprehensive management of the target energy site does not meet the site requirements, the security comprehensive management of the target energy site is upgraded accordingly.
[0110] The calculation formula of the site security management compliance index is:
[0111]
[0112] Among them, F d is the site security management compliance index, A x , K k , S s , H g They are site safety index, security reliability index, security timeliness index, and site security compliance index, τ1, τ2, τ3, It is the preset characteristic coefficient (the characteristic coefficient is obtained by querying the preset security management database).
[0113] According to an embodiment of the present invention, it also includes:
[0114] The processing according to the regulatory system characteristic data to obtain the site security compliance index specifically includes:
[0115] The safety regulation characteristic data includes data on the number of regulatory clauses that the site complies with and data on the number of regulatory clauses that the site should comply with, and statistical processing is performed to obtain site safety regulation compliance rate data;
[0116] The safety policy characteristic data includes data on the number of clauses actually executed by the site and data on the number of clauses formulated by the site, and statistical processing is performed to obtain data on the execution rate of the site safety policy;
[0117] The site security compliance index is obtained by processing the site security regulations compliance rate data and the site security system execution rate data.
[0118] The calculation formula of the site security compliance index is:
[0119]
[0120] Among them, H g is the site security compliance index, g t 、j rThey are the site safety regulations compliance rate data and the site safety system execution rate data respectively, and θ and ξ are the preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0121] It should be noted that in addition to safety, reliability and timeliness, compliance of the security system is also a key focus. To this end, the site safety regulations compliance rate data and the site safety system implementation rate data are processed to obtain the site security compliance index. Among them, the site safety regulations compliance rate refers to the ratio of the number of clauses in national and local safety regulations and industry standards that the energy site complies with to the total number of safety regulations and standards that should be complied with. The site safety system implementation rate refers to the ratio of the number of safety system clauses that are actually implemented to the total number of safety system clauses that have been formulated.
[0122] In a second aspect, the present invention further discloses a security integrated management system for energy sites, comprising a memory and a processor, wherein the memory comprises a security integrated management method program for energy sites, and when the security integrated management method program for energy sites is executed by the processor, the following steps are implemented:
[0123] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0124] Processing the site monitoring record data and security operation record data to obtain a site security index;
[0125] Processing the security operation record data to obtain a security reliability index;
[0126] Processing the security operation record data to obtain a security timeliness index;
[0127] Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index;
[0128] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, processing is performed to obtain a site security management compliance index, and the corresponding security system is upgraded.
[0129] It should be noted that the safety management of energy sites is of vital importance, and its comprehensive security management method needs to meet various requirements. However, there is currently a lack of a clear judgment mechanism that can comprehensively and accurately evaluate the existing comprehensive security management method to ensure that it meets the actual safety requirements of the energy site. Therefore, in this embodiment, first, by collecting the monitoring record information of the target energy site within a preset time period, and extracting security-related record data, including site monitoring record data, security operation record data, and legal and regulatory characteristic data, the site monitoring record data and security operation record data are processed to obtain the site security index, the security operation record data are processed to obtain the security reliability index, the security operation record data are processed to obtain the security timeliness index, the legal and regulatory characteristic data are processed to obtain the site security compliance index, the site security index, the security reliability index and the security timeliness index are processed in combination with the site security compliance index to obtain the site security management compliance index, and the corresponding security system is upgraded, thereby realizing the technology for comprehensive security management of energy sites.
[0130] According to an embodiment of the present invention, the monitoring record information of the target energy site within a preset time period is collected, and the security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including:
[0131] Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data;
[0132] The site monitoring record data includes site intrusion event record data and site security accident record data;
[0133] The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data;
[0134] The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
[0135] It should be noted that in order to comprehensively and accurately evaluate whether the security protection of the security system meets actual needs, it is necessary to monitor the monitoring record information of the target energy site within a preset time period and extract security-related record data, including site monitoring record data, security operation record data and laws and regulations characteristic data. Among them, the site monitoring record data includes site intrusion event record data and site safety accident record data, the security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data, and the laws and regulations characteristic data includes safety law characteristic data and safety system characteristic data.
[0136] According to an embodiment of the present invention, the step of processing the site monitoring record data and the security operation record data to obtain a site security index includes:
[0137] Extract and process the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data;
[0138] Extract and process the safety accident record data of the site to obtain safety accident incidence rate data and personnel casualty rate data;
[0139] Extract and process the security equipment operation record data to obtain equipment failure safety accident rate data;
[0140] The site safety index is obtained by processing the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data and the casualty rate data in combination with the equipment failure safety accident rate data.
[0141] It should be noted that the security situation of the site is the most direct feedback on the protection capability of the security system. Therefore, the site intrusion event record data is extracted and processed to obtain the intrusion event rate data and the intrusion detection success rate data, where the intrusion event rate refers to the ratio of the number of illegal intrusions suffered by the energy site within a certain period of time (such as one year or one quarter) to the total operation time of the site, and the intrusion detection success rate refers to the percentage of the number of illegal intrusion behaviors (people or vehicles entering the site without authorization) successfully detected to the total number of intrusion behaviors actually occurring. The site safety accident record data is extracted and processed to obtain the safety accident rate data and the casualty rate data, where the safety accident rate refers to the ratio of the number of safety accidents such as fires, explosions, and leaks occurring in the energy site within a specific time range to the total operation time of the site, and the casualty rate refers to the ratio of the number of casualties caused by safety accidents occurring in the energy site to the total number of employees at the site. The security equipment operation record data is extracted and processed to obtain the equipment failure safety accident rate data, where the equipment failure safety accident rate refers to the ratio of the number of safety accidents caused by equipment failure to the total operation time of the equipment. Finally, the site security index is obtained by processing the above data;
[0142] The calculation formula of the site security index is:
[0143]
[0144] Among them, A x is the site security index, p m , o n They are intrusion event rate data and intrusion detection success rate data, respectively. b 、u v are the safety accident rate data and the casualty rate data, respectively. c is the equipment failure safety accident rate data, ε1, ε2, δ1 and δ2 are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0145] According to an embodiment of the present invention, the step of processing the security operation record data to obtain a security reliability index includes:
[0146] Extracting and processing the security system operation record data to obtain security system availability data;
[0147] Extract and process the security equipment operation record data to obtain the equipment mean time between failures and the equipment mean time to repair data;
[0148] The security system availability data is processed in combination with the equipment mean time between failures data and the equipment mean time to repair data to obtain a security reliability index.
[0149] It should be noted that, on the other hand, the reliability of the security system needs to be judged. Therefore, the security system operation record data is extracted and processed to obtain the security system availability data, where the security system availability refers to the ratio of the normal operation time of the security system to the total operation time within a certain period of time. The security equipment operation record data is extracted and processed to obtain the equipment mean time between failures and the equipment mean repair time data, where the equipment mean time between failures refers to the average working time of the security equipment between two adjacent failures, and the equipment mean repair time refers to the average time required for the equipment to resume normal operation after each failure. Then, the above data is processed to obtain the security reliability index;
[0150] The calculation formula of the security reliability index is:
[0151]
[0152] Among them, K k is the security reliability index, m p is the security system availability data, n o 、b i They are the equipment mean time between failures and the equipment mean time to repair data respectively; γ1, π1, and π2 are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0153] According to an embodiment of the present invention, the step of processing the security operation record data to obtain a security timeliness index includes:
[0154] Extract and process the emergency response record data to obtain average value data of emergency response time;
[0155] Extract and process the hidden danger record data to obtain hidden danger inspection cycle data and hidden danger inspection coverage rate data;
[0156] The average value data of the emergency response time is processed in combination with the hidden danger inspection cycle data and the hidden danger inspection coverage rate data to obtain a security timeliness index.
[0157] It should be noted that for safety issues, whether the security system can respond in time and whether it can detect hidden dangers in real time is also an important part. Therefore, the emergency response record data is extracted and processed to obtain the average value data of the emergency response time, where the emergency response time refers to the time interval from the occurrence of a safety accident to the initiation of effective emergency measures. The hidden danger record data is extracted and processed to obtain the hidden danger investigation cycle data and hidden danger investigation coverage rate data, where the hidden danger investigation cycle refers to the time interval between two comprehensive hidden danger investigations; the coverage rate refers to the ratio of the areas and equipment actually inspected in the hidden danger investigation to the areas and equipment that should be inspected. Then, the above data is processed to obtain the security timeliness index;
[0158] The calculation formula of the security timeliness index is:
[0159]
[0160] Among them, S s is the security timeliness index, a q is the average value of emergency response time, d x 、f e They are the hidden danger inspection cycle data and the hidden danger inspection coverage data respectively; η and μ are the preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0161] According to an embodiment of the present invention, the site security index, the security reliability index and the security timeliness index are processed in combination with the site security compliance index to obtain a site security management compliance index, and a corresponding security system upgrade is performed, including:
[0162] According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, a site security management compliance index is obtained;
[0163] Comparing the site security management compliance index with a preset site security management compliance threshold to obtain a threshold comparison result;
[0164] Determining whether the comprehensive security management of the target energy site meets the site requirements according to the threshold comparison result;
[0165] If the comprehensive security management of the target energy site does not meet the site requirements, a corresponding system upgrade is performed on the comprehensive security management of the target energy site.
[0166] It should be noted that the site security index, security reliability index and security timeliness index are processed in combination with the site security compliance index to obtain the site security management compliance index, which is then compared with the preset site security management compliance threshold to obtain the threshold comparison result. According to the threshold comparison result, it is judged whether the security comprehensive management of the target energy site meets the site requirements. If the security comprehensive management of the target energy site does not meet the site requirements, the security comprehensive management of the target energy site is upgraded accordingly.
[0167] The calculation formula of the site security management compliance index is:
[0168]
[0169] Among them, F d is the site security management compliance index, A x , K k , S s , H g They are site safety index, security reliability index, security timeliness index, and site security compliance index, τ1, τ2, τ3, It is the preset characteristic coefficient (the characteristic coefficient is obtained by querying the preset security management database).
[0170] According to an embodiment of the present invention, it also includes:
[0171] The processing according to the regulatory system characteristic data to obtain the site security compliance index specifically includes:
[0172] The safety regulation characteristic data includes data on the number of regulatory clauses that the site complies with and data on the number of regulatory clauses that the site should comply with, and statistical processing is performed to obtain site safety regulation compliance rate data;
[0173] The safety policy characteristic data includes data on the number of clauses actually executed by the site and data on the number of clauses formulated by the site, and statistical processing is performed to obtain data on the execution rate of the site safety policy;
[0174] The site security compliance index is obtained by processing the site security regulations compliance rate data and the site security system execution rate data.
[0175] The calculation formula of the site security compliance index is:
[0176]
[0177] Among them, H g is the site security compliance index, g t 、j rThey are the site safety regulations compliance rate data and the site safety system execution rate data respectively, and θ and ξ are the preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset security management database).
[0178] It should be noted that in addition to safety, reliability and timeliness, compliance of the security system is also a key focus. To this end, the site safety regulations compliance rate data and the site safety system implementation rate data are processed to obtain the site security compliance index. Among them, the site safety regulations compliance rate refers to the ratio of the number of clauses in national and local safety regulations and industry standards that the energy site complies with to the total number of safety regulations and standards that should be complied with. The site safety system implementation rate refers to the ratio of the number of safety system clauses that are actually implemented to the total number of safety system clauses that have been formulated.
[0179] The present invention discloses a method and system for comprehensive security management of energy sites. The method and system collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and laws and regulations characteristic data. The method and system process the site monitoring record data and security operation record data to obtain a site safety index. The method processes the security operation record data to obtain a security reliability index. The method processes the security operation record data to obtain a security timeliness index. The method processes the laws and regulations characteristic data to obtain a site security compliance index. The method processes the site safety index, security reliability index, and security timeliness index in combination with the site security compliance index to obtain a site security management compliance index. The corresponding security system upgrade is performed, thereby realizing a technology for comprehensive security management of energy sites.
[0180] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.
[0181] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units; they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0182] In addition, all functional units in the embodiments of the present invention may be integrated into one processing unit, or each unit may be separately used as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0183] Those skilled in the art can understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions, and the aforementioned program can be stored in a readable storage medium. When the program is executed, it executes the steps of the above method embodiments; and the aforementioned storage medium includes: mobile storage devices, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), disks or optical disks, and other media that can store program codes.
[0184] Alternatively, if the above-mentioned integrated unit of the present invention is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a readable storage medium. Based on this understanding, the technical solution of the embodiment of the present invention can be essentially or partly reflected in the form of a software product that contributes to the prior art. The software product is stored in a storage medium and includes several instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROM, RAM, magnetic disks or optical disks.
Claims
1. A comprehensive security management method for energy sites, characterized in that: The following steps are involved: Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data; Processing the site monitoring record data and security operation record data to obtain a site security index; Processing the security operation record data to obtain a security reliability index; Processing the security operation record data to obtain a security timeliness index; Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index; According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, processing is performed to obtain a site security management compliance index, and the corresponding security system is upgraded.
2. The integrated security management method for energy sites according to claim 1, characterized in that: The monitoring record information of the target energy site within a preset time period is collected, and the security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including: Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data; The site monitoring record data includes site intrusion event record data and site security accident record data; The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data; The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
3. The integrated security management method for energy sites according to claim 2, characterized in that: The processing of the site monitoring record data and the security operation record data to obtain the site security index includes: Extract and process the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data; Extract and process the safety accident record data of the site to obtain safety accident incidence rate data and personnel casualty rate data; Extract and process the security equipment operation record data to obtain equipment failure safety accident rate data; The site safety index is obtained by processing the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data and the casualty rate data in combination with the equipment failure safety accident rate data.
4. The integrated security management method for energy sites according to claim 3 is characterized in that: The step of processing the security operation record data to obtain a security reliability index includes: Extracting and processing the security system operation record data to obtain security system availability data; Extract and process the security equipment operation record data to obtain the equipment mean time between failures and the equipment mean time to repair data; The security system availability data is processed in combination with the equipment mean time between failures data and the equipment mean time to repair data to obtain a security reliability index.
5. The integrated security management method for energy sites according to claim 4, characterized in that: The processing according to the security operation record data to obtain the security timeliness index includes: Extract and process the emergency response record data to obtain average value data of emergency response time; Extract and process the hidden danger record data to obtain hidden danger inspection cycle data and hidden danger inspection coverage rate data; The average value data of the emergency response time is processed in combination with the hidden danger inspection cycle data and the hidden danger inspection coverage rate data to obtain a security timeliness index.
6. The integrated security management method for energy sites according to claim 5, characterized in that: The processing according to the site safety index, the security reliability index and the security timeliness index is combined with the site security compliance index to obtain the site security management compliance index, and perform corresponding security system upgrades, including: According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, a site security management compliance index is obtained; Comparing the site security management compliance index with a preset site security management compliance threshold to obtain a threshold comparison result; Determining whether the comprehensive security management of the target energy site meets the site requirements according to the threshold comparison result; If the comprehensive security management of the target energy site does not meet the site requirements, a corresponding system upgrade is performed on the comprehensive security management of the target energy site.
7. An integrated security management system for energy sites, characterized in that: The system includes: a memory and a processor, wherein the memory includes a program of a security integrated management method for energy sites, and when the program of the security integrated management method for energy sites is executed by the processor, the following steps are implemented: Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data; Processing the site monitoring record data and security operation record data to obtain a site security index; Processing the security operation record data to obtain a security reliability index; Processing the security operation record data to obtain a security timeliness index; Processing the data according to the characteristics of the regulations and systems to obtain a site security compliance index; According to the site safety index, security reliability index and security timeliness index, combined with the site security compliance index, processing is performed to obtain a site security management compliance index, and the corresponding security system is upgraded.
8. The integrated security management system for energy sites according to claim 7, characterized in that: The monitoring record information of the target energy site within a preset time period is collected, and the security-related record data is extracted, including site monitoring record data, security operation record data, and legal system characteristic data, including: Collect monitoring record information of target energy sites within a preset time period, and extract security-related record data, including site monitoring record data, security operation record data, and regulatory system characteristic data; The site monitoring record data includes site intrusion event record data and site security accident record data; The security operation record data includes security system operation record data, security equipment operation record data, emergency response record data and hidden danger record data; The regulatory system characteristic data includes safety regulatory characteristic data and safety system characteristic data.
9. The integrated security management system for energy sites according to claim 8, characterized in that: The processing of the site monitoring record data and the security operation record data to obtain the site security index includes: Extract and process the site intrusion event record data to obtain intrusion event occurrence rate data and intrusion detection success rate data; Extract and process the safety accident record data of the site to obtain safety accident incidence rate data and personnel casualty rate data; Extract and process the security equipment operation record data to obtain equipment failure safety accident rate data; The site safety index is obtained by processing the intrusion event rate data, the intrusion detection success rate data, the safety accident rate data and the casualty rate data in combination with the equipment failure safety accident rate data.
10. The integrated security management system for energy sites according to claim 9, characterized in that: The step of processing the security operation record data to obtain a security reliability index includes: Extracting and processing the security system operation record data to obtain security system availability data; Extract and process the security equipment operation record data to obtain the equipment mean time between failures and the equipment mean time to repair data; The security system availability data is processed in combination with the equipment mean time between failures data and the equipment mean time to repair data to obtain a security reliability index.
Citation Information
Patent Citations
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