Electric safety supervision wireless communication method, system and equipment thereof

By analyzing the support distribution of tracking information sources for electricity safety incidents and optimizing the wireless communication mechanism, the problem of information transmission overload was solved, the targeting and adaptability of information transmission were achieved, and the efficiency and accuracy of incident handling were improved.

CN121865314AInactive Publication Date: 2026-04-14JINGNONG (JIANGSU) INFORMATION TECH CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-23
Publication Date
2026-04-14
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing wireless communication methods suffer from information transmission overload in electrical safety incidents, making it difficult for incident handlers to efficiently filter and analyze key information, thus affecting the real-time nature and accuracy of decision-making.

Method used

By analyzing the support distribution of different tracking information sources for electricity safety incidents, a targeted wireless communication mechanism is established to prioritize the transmission of information from sources with high support, assisting requesters in generating fuzzy support requirements based on intent keywords and future information plans, and optimizing the information transmission path.

Benefits of technology

It improves the relevance and adaptability of information transmission, reduces the cognitive burden on incident handlers, enhances the accuracy of decision-making and the efficiency of incident handling, and reduces the risk of judgment errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an electricity utilization safety supervision wireless communication method, system and device, and relates to the technical field of wireless communication, and the method comprises the steps: when an electricity utilization safety event is monitored, analyzing the support degree distribution of different tracking information sources of the electricity utilization safety event for the current support personnel group to process the electricity utilization safety event; and establishing wireless communication between different tracking information sources and the personnel group based on a first wireless communication mechanism supporting degree distribution pre-matching. When an electricity utilization safety event is monitored, the system analyzes the support degree distribution of different tracking information sources, and based on the support degree distribution, the system is matched with a wireless communication mechanism to ensure that wireless communication channels between the different tracking information sources and an event processing personnel group are effectively configured. A wireless communication mechanism enables information transmission to be more targeted and adaptive, event processing personnel can be helped to rapidly obtain key information, cognitive burden caused by information overload is reduced, and event processing efficiency and decision accuracy are improved.
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Description

Technical Field

[0001] This invention relates to the field of wireless communication technology, and in particular to wireless communication methods, systems and equipment for monitoring electricity safety. Background Technology

[0002] Currently, in power grid monitoring and communication systems, when a power safety incident occurs, the system uses wireless communication to track the incident in real time and transmits all relevant tracking information to incident handlers immediately. However, existing wireless communication methods suffer from information transmission overload, making it difficult for incident handlers to efficiently filter and analyze key information when receiving a large amount of data, thus affecting the real-time performance and accuracy of incident handling.

[0003] Especially during information transmission, all tracking information is sent simultaneously to incident handlers, resulting in an excessive amount of information and placing a significant cognitive burden on their decision-making and judgment. In wireless communication systems, the efficiency and accuracy of information transmission are crucial for the decision-making of handlers. When the amount of data is too large and there is a lack of effective filtering, incident handlers may be unable to concentrate on processing the massive amount of information, thus neglecting or omitting key information. This not only reduces the applicability of wireless communication systems in electricity safety supervision but also increases the risk of human error.

[0004] Therefore, there is an urgent need for an optimized solution based on wireless communication technology to improve the relevance and adaptability of information transmission, reduce the cognitive burden on incident handlers, and ensure efficient handling and decision-making in electrical safety incidents. Summary of the Invention

[0005] One of the objectives of this invention is to provide a wireless communication method for monitoring electricity safety, in order to solve the problems in the background art.

[0006] The wireless communication method for monitoring electricity safety provided in this embodiment of the invention includes: When an electrical safety incident is detected, analyze the distribution of support for the rational handling of the incident by the current personnel group from different tracking information sources. A first wireless communication mechanism based on support distribution pre-matching is used to establish wireless communication between different tracking information sources and personnel groups.

[0007] Optionally, the analysis of the support distribution of different tracking information sources for rational handling of electricity safety incidents by different personnel groups includes: Iterate through the different tracking information sources in turn; Each time a trace information source is encountered, the degree to which the trace information source meets the support needs of the current support personnel group for rationally handling electricity safety incidents is determined, and this degree is used as the support level of the trace information source encountered. After traversing different tracking information sources, the different tracking information sources and their support are used as support distributions.

[0008] Optionally, the step of obtaining the support requirement includes: Based on the rational handling stage standard of pre-matching electricity safety incidents, the next rational handling stage is determined according to the handling stages of electricity safety incidents in the history of personnel groups. Identify unresolved disagreements in the historical handling of electrical safety incidents by the personnel team. The generation support requirements are as follows: Tracking information from the source can help the team move to the next stage of rational processing. Furthermore, tracking information from sources can help the team resolve unresolved disagreements.

[0009] Optionally, unresolved disagreements in the historical handling of electrical safety incidents by the identification personnel group include: Identify the disagreements in the handling of electrical safety incidents by the personnel group throughout history. Determine the set of disagreements from the handling of disagreements; among them, all disagreements in the handling of disagreements in which the overlapping parts of the personnel involved in each pair of disagreements are the same or the pair of disagreements in the same category are included in the same set of disagreements. Each of the last divergences in the divergence set is taken as the target for resolution. If no standard processing stage representing that the identified objective has been resolved appears after the processing stage of resolving the identified objective, the corresponding identified objective will be treated as an unresolved dispute.

[0010] Optionally, the first wireless communication mechanism includes: According to the different support distributions, the tracking information sources are sorted from largest to smallest according to their respective support to obtain the tracking information source sequence; The tracking information source sequence is divided into multiple local sequences; among them, tracking information sources whose pairwise support difference does not exceed a threshold are included in the same local sequence; Tracking information from the same local sequence source is transmitted to the personnel group in sequence according to the order of the sequence.

[0011] Optionally, wireless communication methods for electricity safety monitoring also include: When any member of the personnel group requests independent support for the rational handling of an electrical safety incident, the personnel assisting the request are matched with a second wireless communication mechanism based on different tracking information sources; Based on the second wireless communication mechanism, wireless communication is established between different tracking information sources and requesting personnel.

[0012] Optionally, the person making the assistance request may be matched with a second wireless communication mechanism based on different tracking information sources, including: Based on the intent keywords entered by the requesting personnel, and according to the future information tracking plans of different tracking information sources, multiple fuzzy support needs and their degree of demand are determined; Iterate through each fuzzy support requirement in descending order of demand; During each traversal, a processing scenario evolution sequence is generated based on the traversed fuzzy support requirements and the relevant plans of the N untraversed fuzzy support requirements in the future information tracking plan; the average demand degree of the N untraversed fuzzy support requirements is closest to the standard average; N is a positive integer; Show the requesting personnel the evolution of the processing situation sequence; The processing scenario selected by the requesting personnel during the evolution of the processing scenario evolution sequence is used as the matching basis scenario, and the traversal continues from the next fuzzy support requirement after the last fuzzy support requirement corresponding to the matching basis scenario. After traversing each fuzzy support requirement, a second wireless communication mechanism is matched based on the matching criteria obtained in each traversal.

[0013] Optionally, based on the intent keywords input by the person making the request, and according to future information tracking plans from different tracking information sources, multiple fuzzy support needs and their degree of demand are determined, including: Based on the pre-matching of intent keywords from the requester's input, a requirement template is generated, and fuzzy support requirements are generated according to future information tracking plans from different tracking information sources. The template weight of the requirement generation template on which the fuzzy support requirement is based is used as the corresponding requirement degree.

[0014] The wireless communication system for monitoring electricity safety provided in this embodiment of the invention includes: The analysis module is used to analyze the distribution of support for rational handling of electricity safety incidents by different tracking information sources when an electricity safety incident is detected. The wireless communication module is used to establish wireless communication between different tracking information sources and personnel groups based on the first wireless communication mechanism of support distribution pre-matching.

[0015] An electronic device provided in this invention includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the method described in any of the above embodiments.

[0016] The present invention has achieved the following beneficial effects: When an electrical safety incident is detected, the system analyzes the support distribution of different tracking information sources. Based on this distribution, the system matches a wireless communication mechanism to ensure effective configuration of wireless communication channels between different tracking information sources and the incident handling personnel. This wireless communication mechanism makes information transmission more targeted and adaptable, helping incident handling personnel quickly obtain key information, reducing the cognitive burden caused by information overload, and thus improving the efficiency of incident handling and the accuracy of decision-making. In this way, not only is the application value of the wireless communication system enhanced in electrical safety supervision, but the risk of judgment errors caused by information overload is also greatly reduced, ensuring efficient handling and timely response to electrical safety incidents.

[0017] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the written description and the accompanying drawings.

[0018] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a flowchart of the wireless communication method for electricity safety monitoring in an embodiment of the present invention; Figure 2 This is a schematic diagram illustrating wireless communication between different tracking information sources and personnel groups in an embodiment of the present invention; Figure 3 This is another flowchart of the wireless communication method for electricity safety monitoring in this embodiment of the invention; Figure 4 This is another flowchart of the wireless communication method for electricity safety monitoring in this embodiment of the invention; Figure 5 This is a schematic diagram of a wireless communication system for electricity safety monitoring in an embodiment of the present invention. Detailed Implementation

[0020] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0021] Example 1: This invention provides a wireless communication method for monitoring electricity safety, such as... Figure 1 As shown, it includes: S1. When an electrical safety incident is detected, analyze the distribution of support for the rational handling of the electrical safety incident by the current personnel group from different tracking information sources. In S1, an electrical safety incident refers to an event that occurs during the operation of a power system due to equipment failure, human error, natural disasters, or other reasons, which may endanger the safety of power facilities, affect power supply, or even cause personal injury or property damage. Examples include electrical fires, electrical equipment failures, and power outages. Tracking information sources refer to the sources that can track and obtain information on the development of electrical safety incidents, such as power monitoring systems and personnel dispatch systems. The support distribution includes the support of different tracking information sources, representing the degree to which the current tracking information source can support the personnel group in rationally handling electrical safety incidents. Rationally handling electrical safety incidents refers to handling electrical safety incidents calmly, scientifically, and systematically, and formulating appropriate decisions. S2. Based on the first wireless communication mechanism of support distribution pre-matching, establish wireless communication between different tracking information sources and personnel groups; In S2, the personnel group consists of multiple relevant event handling personnel. The pre-matched first wireless communication mechanism is a pre-set communication mechanism that matches the support distribution. It instructs how to establish wireless communication between different tracking information sources and the personnel group, enabling the personnel group to rationally handle electricity safety events. Specifically, for example, tracking information sources with higher support are given priority in wireless communication with the personnel group, allowing the personnel group to prioritize tracking information that supports their rational handling of electricity safety events and focus their analysis, reducing cognitive burden and avoiding information overload, thus enabling rational thinking and judgment. When establishing wireless communication between different tracking information sources and the personnel group, the wireless communication channels between different tracking information sources and the personnel group are configured accordingly based on the first wireless communication mechanism. Therefore, after establishing wireless communication between different tracking information sources and the personnel group based on the first wireless communication mechanism, the personnel group is supported in rationally handling electricity safety events. The established wireless communication between different tracking information sources and the personnel group is as follows: Figure 2 As shown.

[0022] In this embodiment of the invention, when an electricity safety incident is detected, the system analyzes the support distribution of different tracking information sources. Based on this support distribution, the system matches a wireless communication mechanism to ensure that the wireless communication channels between different tracking information sources and the incident handling personnel are effectively configured. The wireless communication mechanism makes information transmission more targeted and adaptable, helping incident handling personnel quickly obtain key information, reducing the cognitive burden caused by information overload, thereby improving the efficiency of incident handling and the accuracy of decision-making. In this way, not only is the application value of the wireless communication system enhanced in electricity safety supervision, but the risk of judgment errors caused by information overload is also greatly reduced, ensuring efficient handling and timely response to electricity safety incidents.

[0023] Example 2: In embodiments of the present invention, such as Figure 3 As shown, in S1, the analysis of the support distribution of different tracking information sources for electricity safety incidents currently supporting the rational handling of electricity safety incidents by personnel groups includes: S11. Iterate through the different tracking information sources in sequence; S12. Each time the tracing information source is traversed, determine the degree of conformity between the tracing information source and the current support personnel group's support needs for rationally handling electricity safety incidents, and use this degree as the support degree of the tracing information source. In S12, the support requirement for the current support personnel group to rationally handle electricity safety incidents refers to the current support personnel group's requirement for tracking information sources to rationally handle electricity safety incidents; the compliance degree refers to the degree to which the traversed tracking information sources meet the support requirement; the greater the compliance degree, the greater the support degree of the current support personnel group to rationally handle electricity safety incidents for the corresponding tracking information source, and the compliance degree is used as the support degree. S13. After traversing different tracking information sources, use the different tracking information sources and their support as the support distribution. In S13, after traversing different tracking information sources, the support of each tracking information source will be determined. Therefore, the different tracking information sources and their support are used as the support distribution.

[0024] In analyzing the support distribution, this invention introduces the support requirements of the current support personnel group for rationally handling electricity safety incidents, uses the conformity of the traversed tracking information sources to determine the support, and finally uses different tracking information sources and their support as the support distribution, thereby improving the accuracy and efficiency of support analysis.

[0025] Example 3: In embodiments of the present invention, such as Figure 4 As shown, in step S12, the step of obtaining the required information includes: S121. Based on the rational handling stage standard of pre-matching electricity safety incidents, determine the next rational handling stage according to the handling stages of electricity safety incidents in the history of personnel groups; In S121, the pre-matched rational handling stage standard refers to the pre-set staged rational handling standard that matches the electrical safety incident. It can be pre-set by technicians based on their past experience in rationally handling different electrical safety incidents. The rational handling stage standard is used to instruct the personnel group on how to determine the next stage of rational handling of the electrical safety incident after going through the handling stages of the electrical safety incident in its history. S122. Identify unresolved disputes in the historical handling of electrical safety incidents by the personnel group. In S122, when the personnel in the group have handled electrical safety incidents in the past, there may be disagreements. During the handling process, some disagreements will be resolved, while others will remain unresolved and will be treated as unresolved disagreements. S123, The generation support requirements are: Tracking information from the source can help the team move to the next stage of rational processing. Furthermore, tracking information from sources can help the team resolve unresolved disagreements. In S123, tracking information refers to the event development information that the tracking information source can currently track and obtain regarding electrical safety incidents. Support requirements are divided into two aspects: First, tracking information helps the personnel group move to the next rational processing stage. This means that after reviewing the tracking information, the processing ideas of each member will be guided to the next rational processing stage. For example, in an electrical safety incident, the tracking information received by the personnel group is real-time data about electrical equipment faults, showing the location of the fault point, the operating status of the equipment, and other key information. This information enables the members of the personnel group to quickly identify the severity of the fault after reviewing it, thereby guiding them to the next rational processing stage, such as immediately taking emergency power-off measures. Firstly, tracking information helps prevent greater safety hazards. Secondly, it facilitates the resolution of unresolved disagreements within the team. This means that after reviewing the tracking information, team members are guided to address these disagreements. For example, if a team is handling an electrical safety incident and disagrees on whether to cut off the power to the entire area, with one side believing the power should not be completely cut off while the other insists on immediate power cuts for safety, the tracking information, containing detailed data on the surrounding power grid load and equipment status, helps team members understand the current situation and potential risks. This information guides them to reach a consensus and ultimately decide to cut off the power to prevent greater safety hazards.

[0026] In acquiring support requirements, this invention introduces a rational processing stage standard. Based on this standard, the next rational processing stage is quickly determined, and unresolved processing disagreements are identified. Finally, support requirements are generated from two aspects: whether the tracking information is beneficial to prompting the personnel group to enter the next rational processing stage and whether it is beneficial to prompt the personnel group to resolve unresolved processing disagreements. This ensures that after establishing wireless communication between different tracking information sources and the personnel group in the future, the tracking information from the tracking information sources can effectively guide the personnel group to enter the next rational processing stage and resolve unresolved processing disagreements as much as possible. This greatly improves the accuracy, comprehensiveness, and efficiency of support requirement acquisition and enhances the applicability of the system.

[0027] Example 4: In this embodiment of the invention, S122, identifying unresolved disputes in the historical handling stages of electrical safety incidents by the personnel group, includes: S1221. Identify discrepancies in the handling of electrical safety incidents by the personnel group in the past. In S1221, when identifying and handling disagreements, semantic analysis technology can be used to determine the outcome based on the discussion and dialogue between personnel at different stages of the process. S1222. Determine the set of disagreements from the handling of disagreements; wherein, all the disagreements in the handling of disagreements in which the overlapping parts of the personnel involved in each pair of disagreements are the same or the pairs of disagreements in the same category are included in the same set of disagreements. S1223. Take the last divergence in each divergence set as the target for resolution. In S1222 to S1223, the handling of the disagreement involves the personnel involved in the disagreement, that is, the relevant personnel who generated the disagreement; the overlapping parts of the personnel involved in each pair of disagreements are the same, which means that the overlapping parts of the personnel involved in each pair of disagreements in the disagreement set are consistent; the progressive relationship of the same type of disagreement refers to the progressive relationship of multiple disagreements of the same type developing in sequence; the overlapping parts of the personnel involved in each pair of disagreements are the same or there is a progressive relationship of the same type of disagreement in each pair, which means that the disagreements in the disagreement set can be merged into a single disagreement, that is, the last disagreement to appear, which is taken as the target for resolution. S1224. If no standard processing stage representing that the target has been resolved appears after the processing stage of the identified target, the corresponding identified target will be regarded as an unresolved dispute. In S1224, if the standard processing stage appears after the processing stage of the identified target, it means that the identified target has been resolved. For example, if the identified target is a disagreement on the severity of the electricity safety problem, and the standard processing stage is for all personnel to jointly develop a problem-solving strategy, it means that there is a consensus on the severity of the electricity safety problem and measures have been taken, so it has been resolved. If no standard processing stage representing the resolution of the identified target appears after the processing stage of the identified target, the corresponding identified target will be treated as an unresolved disagreement.

[0028] In identifying unresolved disagreements, this invention utilizes the overlapping aspects of personnel involved in each pair of disagreements, or the sequential existence of similar disagreements in each pair, to group multiple disagreements that can be merged into a single disagreement into the same disagreement set. The last disagreement appearing in each set is then designated as the resolution target, awaiting confirmation of its resolution. This significantly improves the accuracy of unresolved disagreement identification and avoids wasting resources by processing mergeable disagreements in multiple stages sequentially. Furthermore, a standard processing stage is introduced, determining whether the resolution target has been resolved based on whether it appears after the processing stage in which the resolution target is located, further enhancing the efficiency of unresolved disagreement identification.

[0029] Example 5: In this embodiment of the invention, in step S2, the first wireless communication mechanism includes: According to the different support distributions, the tracking information sources are sorted from largest to smallest according to their respective support to obtain the tracking information source sequence; The tracking information source sequence is divided into multiple local sequences; among them, tracking information sources whose pairwise support difference does not exceed a threshold are included in the same local sequence; Tracking information from the same local sequence source is transmitted to the personnel group in sequence according to the order of the sequence.

[0030] In the first wireless communication mechanism, the threshold represents a small support difference. Tracking information sources with pairwise support differences not exceeding the threshold are included in the same local sequence. This ensures that the tracking information sources within the same local sequence provide comparable support for the personnel group's rational handling of electricity safety incidents, making them suitable for transmission to the personnel group in a single communication. Then, following the sequence order, the tracking information from the sources within the same local sequence is transmitted to the personnel group sequentially, prioritizing the tracking information from sources that currently provide the best support for the personnel group's rational handling of electricity safety incidents. Overall, this significantly improves the effectiveness of supporting the personnel group's rational handling of electricity safety incidents.

[0031] Example 6: In this embodiment of the invention, the wireless communication method for electricity safety monitoring further includes: S3. When any member of the personnel group requests independent support for the rational handling of an electrical safety incident, the personnel assisting the request are matched with a second wireless communication mechanism based on different tracking information sources. In S3, when any person requests independent support for the rational handling of an electrical safety incident, it means that they want individual support for the rational handling of the electrical safety incident. Since they have previously collaborated with other people, it is impossible to determine an appropriate communication mechanism based on the historical handling stage. Therefore, the person requesting assistance will be matched with a second wireless communication mechanism based on different tracking information sources. S4. Based on the second wireless communication mechanism, establish wireless communication between different tracking information sources and requesting personnel; In S4, the second wireless communication mechanism is used to instruct how to establish wireless communication between different tracking information sources and the requesting personnel, so that the system can independently support the requesting personnel in rationally handling electrical safety incidents.

[0032] Example 7: In this embodiment of the invention, in step S3, the person making the assistance request is matched with a second wireless communication mechanism based on different tracking information sources, including: S31. Based on the intent keywords of the person's input, determine multiple fuzzy support needs and their degree of demand according to the future information tracking plans of different tracking information sources; In S31, the intent keyword refers to the keyword entered by the requesting person that reflects their actual intention for the system to support their rational handling of the electricity safety incident; the future information tracking plan refers to the plan for different tracking information sources to track and obtain information on the future development of the electricity safety incident; the fuzzy support requirement is the initial requirement of the requesting person to support their rational handling of the electricity safety incident, jointly reflected by the intent keyword and the future information tracking plan, and its requirement degree represents the magnitude of the fuzzy support requirement; for example, if the requesting person enters "power outage" and "equipment failure" as intent keywords, and the future information tracking plan includes a power outage repair plan and equipment failure troubleshooting progress, then the fuzzy support requirement is that the system needs to support the handling of power outages and equipment failures and track the repair progress, and its requirement degree is a relatively large 10; S32. Iterate through each fuzzy support requirement in descending order of demand. S33. During each traversal, based on the traversed fuzzy support requirements and the relevant plans of the N untraversed fuzzy support requirements in the future information tracking plan, a processing scenario evolution sequence is generated; the average demand degree of the N untraversed fuzzy support requirements is closest to the standard average; N is a positive integer. S34. Show the requesting personnel the evolution of the processing situation evolution sequence; In S32 to S34, the relevant plans in the future information tracking plan for fuzzy support requirements refer to the partial future information tracking plans that can meet the fuzzy support requirements. For example, if the fuzzy support requirement is that the system needs to support the handling of power outages and equipment failures, then the relevant plans are the power outage repair plan and the equipment failure troubleshooting progress. Based on the traversed fuzzy support requirements and the relevant plans in the future information tracking plan for the N fuzzy support requirements that have not been traversed, multiple processing scenarios that evolve sequentially can be created to form a processing scenario evolution sequence. The standard average value is the value with the larger average value representing the degree of demand. By using the average value of the degree of demand of the N fuzzy support requirements that have not been traversed to be closest to the standard average value, the value of N can be made unique, and the multiple processing scenarios that evolve sequentially can be made to be at a similar level to the level of the requesting personnel's desire for the system to individually support their rational handling of power safety events. The evolution of the processing scenario evolution sequence is shown to the requesting personnel. During the evolution process, each processing scenario in the processing scenario evolution sequence is shown to the requesting personnel in the order of the sequence. S35. Take the processing scenario selected by the requesting person during the evolution of the processing scenario evolution sequence as the matching basis scenario, and continue to traverse from the next fuzzy support requirement after the last fuzzy support requirement corresponding to the matching basis scenario. In S35, during the evolution process, the requesting person can further select the processing scenario they want to enter in the future and confirm it as the matching basis scenario. This helps the requesting person to further determine their refined needs for the system to support their rational handling of electricity safety incidents. The last fuzzy support requirement corresponding to the matching basis scenario refers to the last fuzzy support requirement to be traversed among the fuzzy support requirements corresponding to the relevant plans used to create the matching basis scenario. The traversal continues from the next fuzzy support requirement of that fuzzy support requirement. S36. After traversing each fuzzy support requirement, match the second wireless communication mechanism based on the matching criteria obtained in each traversal. In S36, after the second wireless communication mechanism is implemented to establish wireless communication between different tracking information sources and the requesting personnel, it can enable the requesting personnel to sequentially enter the matching basis scenario obtained in each traversal in the future. For example, if the matching basis scenario is to first check the power outage repair plan and then check the equipment fault troubleshooting progress, then the second wireless communication mechanism will first control the relevant tracking information source of the power outage repair plan to transmit the power outage repair plan to the requesting personnel. After the requesting personnel checks the plan, the relevant tracking information source of the equipment fault troubleshooting progress will then control the relevant tracking information source of the equipment fault troubleshooting progress to transmit the equipment fault troubleshooting progress to the requesting personnel.

[0033] In this embodiment of the invention, when assisting a requesting person in quickly matching a second wireless communication mechanism based on different tracking information sources, the requesting person only needs to input intent keywords. The system can automatically determine multiple fuzzy support requirements and their degree of demand, and sequentially traverse each fuzzy support requirement in descending order of demand degree. During each traversal, a processing scenario evolution sequence is generated and presented to the requesting person. This helps the requesting person further determine their refined needs for the system to individually support their rational handling of electricity safety incidents. Finally, based on the matching criteria obtained from each traversal, the second wireless communication mechanism is matched, greatly improving the accuracy, comprehensiveness, and efficiency of the second wireless communication mechanism-assisted quick matching. At the same time, it is also more intelligent and user-friendly.

[0034] Example 8: In this embodiment of the invention, step S31, based on the intent keywords input by the requesting person, determines multiple fuzzy support needs and their degree of demand according to future information tracking plans from different tracking information sources, including: S311. Based on the pre-matching of intent keywords from the requesting personnel input, a requirement generation template is generated, and fuzzy support requirements are generated according to the future information tracking plans of different tracking information sources. In S311, the pre-matched requirement generation template is pre-set so that the system can generate fuzzy support requirements by referring to the future information tracking plans of different tracking information sources. For example, if the intent keywords are "power outage" and "equipment failure", and the future information tracking plans of different tracking information sources are the power outage repair plan and the equipment failure troubleshooting progress, then the template indicates that the fuzzy support requirement generated is that the system needs to support the handling of power outages and equipment failures and track the repair progress. S312. The template weight of the requirement generation template on which the fuzzy support requirement is based is used as the corresponding requirement degree. In S312, the demand generation template has a preset template weight, which represents the degree of demand for generating fuzzy support demand using the template. The template weight is then used as the corresponding demand degree.

[0035] In determining multiple fuzzy support requirements and their degree of demand, this invention introduces a requirement generation template and its template weights to quickly generate fuzzy support requirements and determine the corresponding degree of demand based on future information tracking plans from different tracking information sources, thereby improving the system's efficiency.

[0036] Example 9: In this embodiment of the invention, step S33 involves generating a processing scenario evolution sequence based on the traversed fuzzy support requirements and the relevant plans of the N untraversed fuzzy support requirements in the future information tracking plan, including: S331. Sort the fuzzy support requirements that have been traversed and the relevant plans of the first N fuzzy support requirements that have not been traversed in the future information tracking plan according to the traversal order of the corresponding fuzzy support requirements to obtain the relevant plan sequence. In S331, the fuzzy support requirements that are traversed and the first N fuzzy support requirements that are not traversed each have a traversal order. The relevant plans corresponding to each of them are sorted according to the traversal order to obtain the relevant plan sequence. S332. Based on the relevant plan sequence, generate a treatment scenario evolution sequence; wherein, the i-th treatment scenario in the treatment scenario evolution sequence is generated using a scenario generation template based on the first i relevant plans in the relevant plan sequence; i=1,2,3,…,N+1; In S332, the scenario generation template refers to a template that the system uses to generate processing scenarios based on multiple related plans. It can be set in advance by technicians according to actual needs. The generated processing scenario includes the content of the plan and the order of the plan related to the generation and utilization, so that the requesting personnel can understand in advance the scenario of handling electrical safety incidents when they actually encounter the relevant plan used in its generation when viewing the evolution of the processing scenario.

[0037] In the embodiments of the present invention, when generating the processing scenario evolution sequence, a related plan sequence is introduced. The i-th processing scenario in the processing scenario evolution sequence is generated by using the scenario generation template based on the first i related plans in the related plan sequence. This greatly improves the effect of the generated processing scenario evolution sequence in assisting the requesting personnel to further determine their refined needs for the system to independently support their rational handling of electricity safety incidents during the evolution process.

[0038] Example 10: This invention provides a wireless communication system for monitoring electricity safety, such as... Figure 5 As shown, it includes: Analysis module 1 is used to analyze the distribution of support for rational handling of electricity safety incidents by different tracking information sources when an electricity safety incident is detected. Wireless communication module 2 is used to establish wireless communication between different tracking information sources and personnel groups based on the first wireless communication mechanism of support distribution pre-matching.

[0039] Example 11: This invention provides an electronic device, which includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the method described in any of the above embodiments.

[0040] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this invention and their equivalents, this invention also intends to include these modifications and variations.

Claims

1. A wireless communication method for monitoring electricity safety, characterized in that, include: When an electrical safety incident is detected, analyze the distribution of support for the rational handling of the incident by the current personnel group from different tracking information sources. A first wireless communication mechanism based on support distribution pre-matching is used to establish wireless communication between different tracking information sources and personnel groups.

2. The wireless communication method for electricity safety monitoring as described in claim 1, characterized in that, The analysis of the distribution of support for rational handling of electricity safety incidents by different tracking information sources for personnel groups includes: Iterate through the different tracking information sources in turn; Each time a trace information source is encountered, the degree to which the trace information source meets the support needs of the current support personnel group for rationally handling electricity safety incidents is determined, and this degree is used as the support level of the trace information source encountered. After traversing different tracking information sources, the different tracking information sources and their support are used as support distributions.

3. The wireless communication method for electricity safety monitoring as described in claim 2, characterized in that, The steps for obtaining the support requirements include: Based on the rational handling stage standard of pre-matching electricity safety incidents, the next rational handling stage is determined according to the handling stages of electricity safety incidents in the history of personnel groups. Identify unresolved disagreements in the historical handling of electrical safety incidents by the personnel team. The generation support requirements are as follows: Tracking information from the source can help the team move to the next stage of rational processing. Furthermore, tracking information from sources can help the team resolve unresolved disagreements.

4. The wireless communication method for electricity safety monitoring as described in claim 3, characterized in that, Unresolved disagreements in the handling of electrical safety incidents by the identification personnel group in the past include: Identify the disagreements in the handling of electrical safety incidents by the personnel group throughout history. Determine the set of disagreements from the handling of disagreements; among them, all disagreements in the handling of disagreements in which the overlapping parts of the personnel involved in each pair of disagreements are the same or the pair of disagreements in the same category are included in the same set of disagreements. Each of the last divergences in the divergence set is taken as the target for resolution. If no standard processing stage representing that the identified objective has been resolved appears after the processing stage of resolving the identified objective, the corresponding identified objective will be treated as an unresolved dispute.

5. The wireless communication method for electricity safety monitoring as described in claim 1, characterized in that, The first wireless communication mechanism includes: According to the different support distributions, the tracking information sources are sorted from largest to smallest according to their respective support to obtain the tracking information source sequence; The tracking information source sequence is divided into multiple local sequences; among them, tracking information sources whose pairwise support difference does not exceed a threshold are included in the same local sequence; Tracking information from the same local sequence source is transmitted to the personnel group in sequence according to the order of the sequence.

6. The wireless communication method for electricity safety monitoring as described in claim 1, characterized in that, Also includes: When any member of the personnel group requests independent support for the rational handling of an electrical safety incident, the personnel assisting the request are matched with a second wireless communication mechanism based on different tracking information sources; Based on the second wireless communication mechanism, wireless communication is established between different tracking information sources and requesting personnel.

7. The wireless communication method for electricity safety monitoring as described in claim 6, characterized in that, The assistance requester is matched with a second wireless communication mechanism based on different tracking information sources, including: Based on the intent keywords entered by the person making the request, and according to the future information tracking plans of different tracking information sources, multiple fuzzy support needs and their degree of demand are determined; Iterate through each fuzzy support requirement in descending order of demand; During each traversal, a processing scenario evolution sequence is generated based on the traversed fuzzy support requirements and the relevant plans of the N untraversed fuzzy support requirements in the future information tracking plan; the average demand degree of the N untraversed fuzzy support requirements is closest to the standard average; N is a positive integer; Show the requesting personnel the evolution of the processing situation sequence; The processing scenario selected by the requesting personnel during the evolution of the processing scenario evolution sequence is used as the matching basis scenario, and the traversal continues from the next fuzzy support requirement after the last fuzzy support requirement corresponding to the matching basis scenario. After traversing each fuzzy support requirement, a second wireless communication mechanism is matched based on the matching criteria obtained in each traversal.

8. The wireless communication method for electricity safety monitoring as described in claim 7, characterized in that, Based on the intent keywords input by the person making the request, and according to future information tracking plans from different tracking information sources, multiple fuzzy support needs and their degree of demand are determined, including: Based on the pre-matching of intent keywords from the requester's input, a requirement template is generated, and fuzzy support requirements are generated according to future information tracking plans from different tracking information sources. The template weight of the requirement generation template on which the fuzzy support requirement is based is used as the corresponding requirement degree.

9. A wireless communication system for monitoring electricity safety, characterized in that, include: The analysis module is used to analyze the distribution of support for rational handling of electricity safety incidents by different tracking information sources when an electricity safety incident is detected. The wireless communication module is used to establish wireless communication between different tracking information sources and personnel groups based on the first wireless communication mechanism of support distribution pre-matching.

10. An electronic device, characterized in that, The electronic device includes a memory and a processor, wherein the memory stores a computer program and the processor executes the computer program to implement the method as described in any one of claims 1-8.