A processing method and processing system for community security emergency response

By deploying emergency response forces before community safety incidents occur and utilizing the incident handling system to promptly identify, classify, and allocate resources, community safety hazards have been resolved, enhancing the sense of security and well-being of community residents.

CN115829813BActive Publication Date: 2026-06-02HANGZHOU RUNYUAN INFORMATION TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HANGZHOU RUNYUAN INFORMATION TECH CO LTD
Filing Date
2022-12-19
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing communities are unable to effectively handle emergency situations related to production fire safety, flood and typhoon prevention, and other safety hazards, which affects the sense of security and well-being of community residents.

Method used

Before a community safety emergency occurs, incident response forces are pre-configured and connected to the incident handling system. Through the incident receiving platform, incidents are promptly detected, classified, and categorized, and resources are matched and emergency response is carried out to form feedback and optimization methods.

Benefits of technology

It has enabled timely and effective handling of community safety incidents, enhanced the public's sense of security and well-being, and optimized community emergency management through digital means.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of processing method and processing system for community security emergency event, before the event of community security emergency event, event handling power is pre-configured access event processing system, event bursts after having timely receiving event discovery ability, and can timely and effectively classify event, and carry out effective event handling power resource matching, utilize the optimal event handling power after matching and carry out event emergency event processing, and form to each event handling feedback, the comprehensive matching of processing power and event level, cost factor in the community range of sudden security event, through the access of multidimensional security handling power, and multidimensional security event receiving response processing, realize the sustainable optimization processing method of community security event;It can be aimed at community production fire control, flood prevention and so on, through effective emergency handling of emergent event, improve community people's sense of security and happiness.
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Description

Technical Field

[0001] This invention relates to community safety emergency management, and more particularly to a method and system for handling community safety emergencies. Background Technology

[0002] A community is a social entity composed of social groups and organizations within a certain area, and it is also a spatial area where human social activities are highly concentrated. It takes settlements as its foundation or material carrier and is a social unit with relatively complete and independent significance. However, existing communities have safety hazards in community production, fire protection, flood control, and typhoon prevention, making it difficult to effectively handle emergencies and hindering the improvement of community residents' sense of security and happiness. Summary of the Invention

[0003] This invention addresses the existing safety hazards in community production, fire prevention, flood control, and typhoon prevention, which hinder effective emergency response and reduce the sense of security and well-being among community residents. It provides a method and system for community safety emergency response that effectively handles these hazards and improves residents' sense of security and well-being.

[0004] The specific technical solution adopted by the present invention to solve the above-mentioned technical problems is as follows: a method for handling emergency situations in community safety, characterized in that it includes the following processing methods.

[0005] A1. Access to Incident Response Forces: Before a community safety emergency occurs, incident response forces are pre-configured and connected to the incident handling system, including access to the government's inherent safety response forces and access to the response forces of social emergency alliances;

[0006] A2. Incident and Potential Discovery: Connect the incident handling system to the incident receiving platform and / or security incident push entry point used to receive various emergency and sudden security incidents or security potential issues in the community, to ensure that the incident handling system has the ability to receive and discover incidents or potential risks in a timely manner;

[0007] A3. Event Classification: Based on the event detection capability in step A2 above, the event handling system classifies various safety hazard events into non-emergency events, emergency events, and special events.

[0008] A4. Event response resource matching: Based on the event classification in step A3 above, automatically dispatch video surveillance capabilities around the event and match the accessed event response resources for security risks and security events of different event classifications.

[0009] A5. Emergency Response and Handling: After the allocation of emergency response resources, the emergency response forces shall carry out emergency response and handling tasks.

[0010] A6. Incident Handling Feedback: Record the incident handling process through the incident handling system, complete the incident handling process registration, record the incident handling results and provide feedback on the accuracy of incident push matching, and continuously optimize the handling methods.

[0011] Before a community safety emergency occurs, emergency response forces are pre-configured and integrated into the emergency handling system. Once an incident occurs, the system has the capability to promptly receive and report incidents, effectively classify and categorize them, and efficiently match emergency response resources. The optimal matched resources are then used for emergency response, and feedback is generated for each incident, enabling a sustainable and optimized approach to handling community safety incidents. This system can effectively address safety hazards related to community production, fire prevention, flood control, typhoon prevention, and other emergencies, thereby enhancing the sense of security and well-being of community residents.

[0012] Preferably, the access to incident response capabilities includes the following incident response capability access guidance process:

[0013] B1. Beginning;

[0014] B2. Access to the list of handling forces and materials: Access to the list of government-owned security handling forces and equipment and materials, as well as the list of social handling forces and equipment;

[0015] B3. Convert geographic information location: Convert the data of the processing force and material list in step B2 above into geographic information data of the security response force available at the corresponding geographic location, forming the corresponding location data;

[0016] B4. Calculate the distance to nearby locations: Calculate the distance between the geographic information location from step B3 above and nearby event locations;

[0017] B5. Equipment list, contact number, geographic information, and location relationship are entered into the database: The equipment list, contact number, geographic information, and location relationship associated with the handling force are stored in the handling force database of the incident handling system, so as to realize the data access guidance of various teams, organizations, forces and resources, and provide rapid access guarantee for the execution of incident handling;

[0018] B6. End.

[0019] Enhancing the timely and systematic guidance of emergency response capabilities can prevent chaos caused by sudden incidents and effectively avoid delays in responding to community emergencies.

[0020] Preferably, the event response resource allocation includes the following allocation mechanism.

[0021] C1. Begin;

[0022] C2. Event Discovery: Based on the event discovery capability described in step A2 above, receive event discoveries in a timely manner;

[0023] C3. Event Classification: Upon receiving the event discovery from step C2 above, based on the pre-matching mechanism of event handling resources in step A4 above, the surrounding video surveillance capabilities are automatically dispatched to classify various security hazard events into levels, namely non-emergency events, emergency events, and special events.

[0024] C4. Query the preset required resources for the event; Based on steps C2 to C3 above, query the preset required resources in the event handling system.

[0025] C5. Calculate the optimal force plan: Based on the above C4 step, query the preset force required for the event and calculate the optimal force plan for handling it;

[0026] C6. Plan Execution: Execute the incident response task according to the optimal response force plan.

[0027] Improve the timeliness and effectiveness of the matching of resources for incident handling.

[0028] Preferably, the event response resource matching includes the following response resource matching algorithm flow:

[0029] D1. Set the "current point" as the starting point;

[0030] D2. Determine if the number of event handling requirements is greater than 0;

[0031] D3. If the above step D2 is correct, then find the point closest to the "current point" from all available points with a quantity greater than 0.

[0032] D4. After finding the point closest to the "current point" in step D3 above, if there are multiple points with the same closest distance, find the point with the most available points from the points with the closest distance.

[0033] D5. Add the point from step D4 above to "Points Passed By";

[0034] D6. Subtract the available quantity at that location from the required quantity;

[0035] D7. Set the available quantity of this point to 0;

[0036] D8. Set the "current point" to this point;

[0037] D9. After executing the matching algorithm task in step D8 above, return to step D2 above and re-execute the matching algorithm judgment in step D2 and its subsequent related matching algorithm process;

[0038] D10. If the above step D2 is negative, then perform the matching of all points in "passed points" as the "closest" best point; then jump to step D11 below to end;

[0039] D11. End;

[0040] Note: The "current location" above refers to the location where the event occurred; the location is the same as the current location.

[0041] Considering the actual situation of the starting point of the event, a matching algorithm is used to provide the optimal recommended emergency response plan for the nearest event, thereby improving the timeliness and effectiveness of event response resources.

[0042] Preferably, the event response resource matching includes the following response resource matching algorithm flow:

[0043] E1. Set the "Event Location" as the starting point;

[0044] E2. Determine if the number of event handling requirements is greater than 0;

[0045] E3. If the above step D2 is correct, then search all disposal capacity data. When the available number is greater than the required number, replace the available number with the required number.

[0046] E4. Compare all disposal capacity data to find the location with the most available resources. There may be multiple locations with the same number of available resources (due to the replacement, locations with more available resources than required resources will have the same number of available resources).

[0047] E5. Select the closest point from the points with the most ties;

[0048] E6. Subtract the available quantity at that location from the required quantity;

[0049] E7. Set the available quantity of this point to 0;

[0050] E8. Add this point to "Points Passed By";

[0051] E9. Change "Current Location" to this location;

[0052] E10. After executing the matching algorithm modification task in step E9 above, return to step E2 above and re-execute the matching algorithm judgment in step E2 and its subsequent related matching algorithm process.

[0053] E11. If the above E2 step is negative, then the best point with the "fewest number" is the one that matches all the points in the "passed points"; then jump to the following E12 step to finish the execution.

[0054] E12. End.

[0055] Considering the actual situation at the starting point of the event, a matching algorithm is used to provide the optimal recommended emergency response plan to reduce mobilization and improve the timeliness and effectiveness of event response resources.

[0056] Preferably, the event response resource matching includes the following response resource cost matching algorithm process:

[0057] F1. Start;

[0058] F2. Determine the distance cost coefficient and communication cost coefficient based on the event type;

[0059] F3. Import the distance and quantity schemes;

[0060] F4. Calculate total distance * distance cost coefficient = distance cost;

[0061] F5. Calculate the contact cost coefficient as the number of digits used for communication;

[0062] F6. Based on the distance cost data and communication cost data obtained from steps F4 and F5 above, determine the total cost and final distribution plan;

[0063] F7. End.

[0064] When matching the optimal recommended emergency response plan, the total cost of the response is also taken into account, so as to balance the emergency response and total cost factors to the greatest extent possible, making the community emergency response more reasonable.

[0065] As a preferred option, the integration of government-owned safety response forces in step A1 above includes lists of personnel, equipment, and supplies from emergency fire management teams, mini fire stations, and flood and typhoon prevention resource stations. Integration of social emergency alliance response forces includes lists of personnel, equipment, and supplies from relevant regional specialties within the social emergency alliance. This improves the effectiveness of integrating safety response forces.

[0066] Preferably, the event receiving platform in step A2 above includes a hardware device platform, a smart inspection platform, and a government data platform. The hardware device platform includes a smart three-piece device platform, used to receive on-site safety hazard reports from smart devices. The smart inspection platform includes a smart safety manager app, used to receive safety hazard reports discovered during inspections. The government data platform receives safety hazard reports pushed by government platforms. The safety event push entry points include the "Calling Spirit" emergency safety event push entry point and the "She'anbang" safety event push entry point. The "Calling Spirit" emergency safety event push entry point allows the public to report various emergency community safety events by scanning a QR code, while the "She'anbang" safety event push entry point allows the public to report various facility and equipment safety events, as well as long-term or non-emergency community safety events, by scanning a QR code. This improves the timeliness, reliability, and effectiveness of community safety event and hazard detection.

[0067] As a preferred approach, non-emergency events in step A3 above include equipment malfunctions and rectifications required during inspections; emergency events include fires, road flooding, burst water pipes, fallen trees, road collapses, wall collapses, and traffic accidents; and special events include construction projects, building collapses, hazardous chemical incidents, and urban gas incidents. This improves the accuracy and effectiveness of community safety incident classification and the effectiveness of resource allocation for response efforts.

[0068] Another objective of this invention application is to provide a processing system for community safety emergency response, comprising a business application system layer, a business support system layer, a data resource system layer, and an infrastructure system layer. The system is characterized by the following features: within the business application system layer, there are an emergency response application terminal, a community safety guardian dashboard application terminal, a community safety guardian management terminal, a community safety assistance application terminal, and a call-to-the-go application terminal. The emergency response application terminal is used to implement the processing method for community safety emergency response described in one of the aforementioned technical solutions. The community safety assistance application terminal serves as the community safety incident push entry point in the community safety emergency response processing method described in one of the aforementioned technical solutions, supporting public reporting of various facilities and equipment, as well as long-term or non-emergency community safety incidents via QR code scanning. The call-to-the-go application terminal serves as the emergency safety incident push entry point in the community safety emergency response processing method described in one of the aforementioned technical solutions, supporting public reporting of various emergency community safety incidents via QR code scanning.

[0069] The beneficial effects of this invention are as follows: Before a community safety emergency occurs, emergency response forces are pre-configured and integrated into the event handling system. After an emergency occurs, the system has the ability to promptly receive event reports, effectively classify and categorize events, and efficiently match event response resources. The optimal matched resources are then used for emergency response, and feedback is generated for each event, achieving a sustainable and optimized approach to handling community safety incidents. This invention can effectively address safety hazards in community production, fire prevention, flood control, and typhoon preparedness by effectively handling emergencies, thereby enhancing the sense of security and well-being of community residents. In this project, by creating a community safety guardian platform, the project focuses on strengthening the shortcomings in "community safety" management. Addressing hazards in community production, fire prevention, flood control, and typhoon preparedness, the emergency response system can link resources such as the community emergency fire management team, mini fire stations, and social emergency alliances, bringing digital empowerment to the "last mile" of social safety and improving the sense of security and well-being of the public. Attached Figure Description

[0070] Figure 1 This is a flowchart illustrating the emergency response method for community safety according to the present invention.

[0071] Figure 2 This is a schematic diagram of the access guidance process for incident handling forces in the emergency response method for community safety of the present invention.

[0072] Figure 3 This is a schematic diagram of the event response resource matching mechanism in the emergency response method for community safety of the present invention.

[0073] Figure 4 This is a schematic diagram of the event response resource matching algorithm in the emergency response method for community safety of the present invention.

[0074] Figure 5 This is a schematic diagram of another event response resource matching algorithm in the community safety emergency response method of the present invention.

[0075] Figure 6 This is a schematic diagram of the cost matching algorithm for handling forces in the emergency response method for community safety of the present invention.

[0076] Figure 7 This is a schematic diagram of the principle of the emergency response system for community safety of the present invention. Detailed Implementation

[0077] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0078] Example 1:

[0079] Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 The illustrated embodiment provides a method for handling emergency situations in community safety, comprising the following steps:

[0080] A1. Access to Incident Response Forces 11: Before a community safety emergency occurs, incident response forces are pre-configured and connected to the incident handling system, including access to the government's inherent safety response forces and access to the social emergency alliance response forces;

[0081] A2. Incident and Potential Discovery 12: Connect the incident handling system to the incident receiving platform and / or security incident push entry point used to receive various emergency and sudden security incidents or security potential issues in the community, to ensure that the incident handling system has the ability to receive and discover incidents or potential risks in a timely manner;

[0082] A3. Event Classification 13: Based on the event detection capability in step A2 above, the event handling system classifies the events into non-emergency events, emergency events, and special events.

[0083] A4. Event response resource matching 14: Based on the event classification in step A3 above, automatically dispatch video surveillance capabilities around the event, and match the accessed event response resources for security risks and security events of different event classifications.

[0084] A5. Emergency Response and Handling 15: After the allocation of emergency response resources, the emergency response forces shall carry out emergency response and handling tasks.

[0085] A6. Incident Handling Feedback 16: Record the incident handling process through the incident handling system, complete the incident handling process registration, record the incident handling results and provide feedback on the accuracy of incident push matching, and continuously optimize the handling methods.

[0086] The aforementioned incident response force access includes the following incident response force access guidance process:

[0087] B1. Beginning;

[0088] B2. Access to the list of handling forces and materials 21: Access to the list of government's inherent safety handling forces and equipment and materials, as well as the list of social emergency alliance handling forces and equipment;

[0089] B3. Geographic Information Location Conversion 22: Convert the data of the processing force and material list in step B2 above into geographic information data of the security handling force available at the corresponding geographic location, forming the corresponding location data;

[0090] B4. Calculate the distance to nearby locations 23: Calculate the distance between the geographic information location from step B3 above and nearby event locations;

[0091] B5. Equipment list, contact number, geographic information, and location relationship are entered into the database: The equipment list, contact number, geographic information, and location relationship associated with the handling force are stored in the handling force database of the incident handling system to realize data access guidance for various teams, organizations, forces, and resources, and provide rapid access guarantee for the execution of incident handling.

[0092] B6. End:

[0093] Preferably, the event response resource allocation includes the following allocation mechanism.

[0094] C1. Begin;

[0095] C2. Event Discovery 31: Based on the event discovery capability of step A2 above, receive event discoveries in a timely manner;

[0096] C3. Event Classification 32: After receiving the event discovery in step C2 above, based on the pre-matching mechanism of event handling resources in step A4 above, the surrounding video surveillance capabilities are automatically dispatched to classify various security hazard events into levels, namely non-emergency events, emergency events, and special events.

[0097] C4. Query the preset required force 33 for the event; Based on the above steps C2 to C3, query the corresponding preset required force in the event handling system;

[0098] C5. Calculate the optimal force plan 34: Based on the above C4 step, query the preset force required for the event and calculate the optimal force plan;

[0099] C6. Plan Execution 35: Execute the incident handling task according to the optimal handling force plan.

[0100] The above-mentioned event response resource matching includes the following response resource matching algorithm process:

[0101] D1. Set the "current point" to the starting point 41;

[0102] D2. Determine if the number of incident handling requirements is greater than 0.42;

[0103] D3. If the above step D2 is correct, then execute the step of finding the point closest to the "current point" from all available points with a quantity greater than 0;

[0104] D4. After finding the point closest to the "current point" in step D3 above, if there are multiple points with the same closest distance, find the point with the most available points from the points with the closest distance 44.

[0105] D5. Add the point from step D4 above to "Points Passed Through" 45;

[0106] D6. Subtract the available quantity at that location, 46, from the required quantity;

[0107] D7. Set the available quantity of this point to 0___47;

[0108] D8. Set the "current position" to this position 48;

[0109] D9. After executing the matching algorithm task in step D8 above, return to step D2 above and re-execute the matching algorithm judgment in step D2 and its subsequent related matching algorithm process;

[0110] D10. If the above step D2 is negative, then perform the matching of all points in "passed points" as the "closest" best point 49; then jump to step D11 below to end;

[0111] D11. End;

[0112] Note: The "current location" mentioned above refers to the location where the event occurred; however, the actual current location can also be one of the following: 1. Community staff initiate the event via PC, and the current location is the map location entered by the team to which the account belongs. 2. The public reports the event by scanning a QR code (using the "Calling Spirit" function), and the current location is the map location recorded by the QR code. 3. The public reports the event via the "She'anbang" mobile app, and the current location is the real-time map location obtained from the user's mobile phone. The required quantity (hereinafter the same) is the number of personnel and materials needed when the community handles the event, determined according to the C3 event classification. It also supports supplementing the required personnel and material quantities based on the on-site personnel's assessment of the event. This required quantity can include various types of materials, such as adding 3 pairs of rain boots, 5 pairs of gloves, 3 professional personnel, 5 community personnel, etc., in one request.

[0113] The above-mentioned event response resource matching includes the following response resource matching algorithm process:

[0114] E1. Set the "Event Location" to the starting point 50;

[0115] E2. Determine if the number of incident handling requirements is greater than 0.51;

[0116] E3. If the above step D2 is correct, then search all disposal capacity data. When the available number is greater than the required number, replace the available number with the required number.

[0117] E4. Compare all disposal force data to find the location with the most available points, and there may be multiple locations with the same number of available points (due to the replacement, locations with more available points than required points will have the same number of available points) 53;

[0118] E5. Select the closest point from the points with the most ties, 54;

[0119] E6. Subtract the available quantity at that location from the required quantity;

[0120] E7. Set the available quantity of this point to 0___56;

[0121] E8. Add this point to "Points Passed By" 57;

[0122] E9. Change "Current Location" to the current location 58;

[0123] E10. After executing the matching algorithm modification task in step E9 above, return to step E2 above and re-execute the matching algorithm judgment in step E2 and its subsequent related matching algorithm process.

[0124] E11. If the above E2 step is negative, then execute the matching of all points in "the points passed through" which is the "minimum number" optimal point 59; then jump to the following E12 step to finish execution;

[0125] E12. End;

[0126] The above-mentioned event response resource matching includes the following event response cost matching algorithm process:

[0127] F1. Start;

[0128] F2. Determine the distance cost coefficient and communication cost coefficient 61 based on the event type;

[0129] F3. Import the distance and quantity schemes into 62;

[0130] F4. Calculate total distance * distance cost coefficient = distance cost 63;

[0131] F5. Calculate the number of digits * communication cost coefficient = communication cost 64;

[0132] F6. Based on the distance cost data and communication cost data obtained from steps F4 and F5 above, determine the total cost and finalize the distribution plan 65;

[0133] F7. End.

[0134] The access to the government's inherent safety response forces in step A1 above includes the list of personnel, equipment, and supplies for emergency fire management teams, mini fire stations, and flood and typhoon prevention resource stations. The access to the social emergency alliance's response forces includes the list of personnel, equipment, and supplies for the relevant regional special forces of the social emergency alliance.

[0135] The event receiving platform in step A2 above includes a hardware device platform, a smart inspection platform, and a government data platform. The hardware device platform includes a smart three-piece device platform, which is used to receive on-site safety hazard issues reported by smart devices. The smart inspection platform includes a smart safety steward APP, which is used to receive safety hazard issues discovered during inspections. The government data platform is used to receive safety hazard issues pushed by government platforms. The safety event push entry points include the Calling Spirit emergency safety event push entry point and the Social Security Assistance safety event push entry point. The Calling Spirit emergency safety event push entry point allows the public to report various emergency community safety events by scanning a code, while the Social Security Assistance safety event push entry point allows the public to report various facilities and equipment, as well as long-term or non-emergency community safety events by scanning a code.

[0136] The non-emergency events in step A3 above include equipment failure and rectification required during inspections; emergency events include fire, road flooding, water pipe rupture, fallen trees, road collapse, wall collapse, and traffic accidents; and special events include engineering construction, building collapse, hazardous chemical incidents, and urban gas incidents.

[0137] By leveraging digital technology, we can enhance the intelligent management and supervision capabilities of urban grassroots units, effectively improve the intelligence and precision of community operation and management, promote the comprehensive and sustainable development of communities, and support urban development decisions.

[0138] Example 2:

[0139] Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7In the illustrated embodiment, another objective of this invention is to provide a processing system for community safety emergency response, comprising a business application system layer 01, a business support system layer 02, a data resource system layer 03, and an infrastructure system layer 04. Within the business application system layer, there are an emergency response application terminal 71, a community safety guardian dashboard application terminal, a community safety guardian management terminal, a community safety assistance application terminal 72, and a call-to-action application terminal 73. The emergency response application terminal is used to implement the processing method for community safety emergency response described in Embodiment 1. The community safety assistance application terminal serves as the community safety incident push entry point in the processing method for community safety emergency response described in Embodiment 1, supporting the public to report various facilities and equipment, as well as long-term or non-emergency community safety incidents, by scanning a code. The call-to-action application terminal serves as the call-to-action emergency safety incident push entry point in the processing method for community safety emergency response described in Embodiment 1, supporting the public to report various emergency community safety incidents by scanning a code. The community safety guardian dashboard application terminal includes an emergency response application module, which integrates material dispatching, personnel dispatching, and incident linkage. The Social Security Guardian Management Terminal is a reporting portal provided to government staff for accessing information.

[0140] The above content and structure describe the basic principles, main features, and advantages of the product of this invention, which should be understood by those skilled in the art. The examples and descriptions above are merely illustrative of the principles of this invention. Various changes and modifications can be made to this invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A method for handling emergency situations in community safety, characterized in that: Including the following processing methods A1. Access to Incident Response Forces: Before a community safety emergency occurs, incident response forces are pre-configured and connected to the incident handling system, including access to the government's inherent safety response forces and access to the response forces of social emergency alliances; A2. Incident and Potential Discovery: Connect the incident handling system to the incident receiving platform and / or security incident push entry point used to receive various emergency and sudden security incidents or security potential issues in the community, to ensure that the incident handling system has the ability to receive and discover incidents or potential risks in a timely manner; A3. Event Classification: Based on the event detection capability in step A2 above, the event handling system classifies various safety hazard events into non-emergency events, emergency events, and special events. A4. Event response resource matching: Based on the event classification in step A3 above, automatically dispatch video surveillance capabilities around the event and match the accessed event response resources for security risks and security events of different event classifications. A5. Emergency Response and Handling: After the allocation of emergency response resources, the emergency response forces shall carry out emergency response and handling tasks. A6. Incident Handling Feedback: Record the incident handling process through the incident handling system, complete the incident handling process registration, record the incident handling results and provide feedback on the accuracy of incident push matching, and continuously optimize the handling methods; The access to incident response capabilities includes the following incident response capability access guidance process. B1. Beginning; B2. Access to the list of handling forces and materials: Access to the list of government-owned security handling forces and equipment and materials, as well as the list of social handling forces and equipment; B3. Convert geographic information location: Convert the data of the processing force and material list in step B2 above into geographic information data of the security response force available at the corresponding geographic location, forming the corresponding location data; B4. Calculate the distance to nearby locations: Calculate the distance between the geographic information location from step B3 above and nearby event locations; B5. Equipment list, contact number, geographic information, and location relationship are entered into the database: The equipment list, contact number, geographic information, and location relationship associated with the handling force are stored in the handling force database of the incident handling system, so as to realize the data access guidance of various teams, organizations, forces and resources, and provide rapid access guarantee for the execution of incident handling; B6. End; The aforementioned event response resource allocation includes the following allocation mechanisms. C1. Begin; C2. Event Discovery: Based on the event discovery capability described in step A2 above, receive event discoveries in a timely manner; C3. Event Classification: Upon receiving the event discovery from step C2 above, based on the pre-matching mechanism of event handling resources in step A4 above, the surrounding video surveillance capabilities are automatically dispatched to classify various security hazard events into levels, namely non-emergency events, emergency events, and special events. C4. Query the preset required resources for the event; Based on steps C2 to C3 above, query the preset required resources in the event handling system. C5. Calculate the optimal force plan: Based on the above C4 step, query the preset force required for the event and calculate the optimal force plan for handling it; C6. Plan Execution: Execute the incident response task according to the optimal response force plan; The event response resource matching includes the following response resource matching algorithm flow: D1. Set the "current point" as the starting point; D2. Determine if the number of event handling requirements is greater than 0; D3. If the above step D2 is correct, then find the point closest to the "current point" from all available points with a quantity greater than 0. D4. After finding the point closest to the "current point" in step D3 above, if there are multiple points with the same closest distance, find the point with the most available points from the points with the closest distance. D5. Add the point from step D4 above to "Points Passed By"; D6. Subtract the available quantity at that location from the required quantity; D7. Set the available quantity of this point to 0; D8. Set the "current point" to this point; D9. After executing the matching algorithm task in step D8 above, return to step D2 above and re-execute the matching algorithm judgment in step D2 and its subsequent related matching algorithm process; D10. If the above step D2 is negative, then perform the matching of all points in "passed points" as the "closest" best point; then jump to step D11 below to end; D11. End; Note: The "current location" above refers to the location where the event occurred; the location is the same as the current location. The event response resource matching includes the following response resource matching algorithm flow: E1. Set the "Event Location" as the starting point; E2. Determine if the number of event handling requirements is greater than 0; E3. If the above step D2 is correct, then search all disposal capacity data. When the available number is greater than the required number, replace the available number with the required number. E4. Compare all the disposal force data to find the location with the most available resources, and there may be multiple locations with the same number of available resources; E5. Select the closest point from the points with the most ties; E6. Subtract the available quantity at that location from the required quantity; E7. Set the available quantity of this point to 0; E8. Add this point to "Points Passed By"; E9. Change "Current Location" to this location; E10. After executing the matching algorithm modification task in step E9 above, return to step E2 above and re-execute the matching algorithm judgment in step E2 and its subsequent related matching algorithm process. E11. If the above E2 step is negative, then the best point with the "fewest number" is the one that matches all the points in the "passed points"; then jump to the following E12 step to finish the execution. E12. End; The event response resource matching includes the following response resource cost matching algorithm process: F1. Start; F2. Determine the distance cost coefficient and communication cost coefficient based on the event type; F3. Import the distance and quantity schemes; F4. Calculate total distance * distance cost coefficient = distance cost; F5. Calculate the contact cost coefficient as the number of digits used for communication; F6. Based on the distance cost data and communication cost data obtained from steps F4 and F5 above, determine the total cost and final distribution plan; F7. End.

2. The method for handling emergency situations in community safety according to claim 1, characterized in that: The access to the government's inherent safety response forces in step A1 above includes the list of personnel, equipment, and supplies for emergency fire management teams, mini fire stations, and flood and typhoon prevention resource stations. The access to the social emergency alliance's response forces includes the list of personnel, equipment, and supplies for the relevant regional special forces of the social emergency alliance.

3. The method for handling emergency situations in community safety according to claim 1, characterized in that: The event receiving platform in step A2 above includes a hardware device platform, a smart inspection platform, and a government data platform. The hardware device platform includes a smart three-piece device platform, which is used to receive on-site safety hazard issues reported by smart devices. The smart inspection platform includes a smart safety steward APP, which is used to receive safety hazard issues discovered during inspection events. The government data platform is used to receive safety hazard issues pushed by the government platform. The security incident push portals include the Calling Spirit emergency security incident push portal and the She'anbang security incident push portal. The Calling Spirit emergency security incident push portal allows the public to scan a code to report various emergency community security incidents, while the She'anbang security incident push portal allows the public to scan a code to report various facilities and equipment, as well as long-term or non-emergency community security incidents.

4. The method for handling emergency situations in community safety according to claim 1, characterized in that: The non-emergency events in step A3 above include equipment failure and rectification required during inspections; emergency events include fire, road flooding, water pipe rupture, fallen trees, road collapse, wall collapse, and traffic accidents; and special events include engineering construction, building collapse, hazardous chemical incidents, and urban gas incidents.

5. A processing system for community safety emergency response, comprising a business application system layer, a business support system layer, a data resource system layer, and an infrastructure system layer, characterized in that: Within the business application system layer, there are an emergency response application terminal, a social security guardian cockpit application terminal, a social security guardian management terminal, a social security assistance application terminal, and a call-to-the-go application terminal. The emergency response application terminal is used to implement the handling method for community safety emergency response as described in any one of claims 1 to 4. The social security assistance application terminal serves as the social security assistance safety event push entry point in the handling method for community safety emergency response as described in any one of claims 1 to 4, supporting the public to scan codes to report various facilities and equipment as well as long-term or non-emergency community safety events. The call-to-the-go application terminal serves as the call-to-the-go emergency safety event push entry point in the handling method for community safety emergency response as described in any one of claims 1 to 4, supporting the public to scan codes to report various emergency community safety events.