Intelligent early warning method and system for rescue personnel applied to natural disasters

By identifying rescuers, their equipment, and the area they are in, the system generates and broadcasts targeted rescue alerts, which solves the problems of low accuracy and efficiency in existing early warning methods and improves the accuracy and safety of disaster relief personnel in issuing early warnings.

CN122369236APending Publication Date: 2026-07-10GUANGZHOU GEOLOGICAL SURVEY INST (GUANGZHOU GEOLOGICAL ENVIRONMENT MONITORING CENT) +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGZHOU GEOLOGICAL SURVEY INST (GUANGZHOU GEOLOGICAL ENVIRONMENT MONITORING CENT)
Filing Date
2026-05-25
Publication Date
2026-07-10

AI Technical Summary

Technical Problem

The existing early warning methods for rescue personnel suffer from low accuracy and efficiency, and cannot be effectively and timely addressed.

Method used

By determining the rescuers' job level, equipment, and the current rescue area they are about to reach, the system assesses whether the conditions are met, generates a targeted rescue alert plan, and broadcasts it via communication tools.

Benefits of technology

It improves the accuracy, efficiency, and safety of early warnings for rescue personnel, ensuring their safety and effectiveness in disaster areas.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of intelligent devices, and discloses a rescue personnel intelligent early warning method and system applied to natural disasters, which comprises the following steps: when rescue personnel are performing rescue in a natural disaster area, according to rescue personnel rescue post identity level information, rescue equipment information and first area information of a current rescue area, whether the rescue personnel meet rescue identity going-to conditions and rescue equipment going-to conditions is judged, if yes, a rescue prompt scheme is generated and a communication tool equipped on the rescue personnel is controlled to broadcast the rescue prompt scheme, the accuracy and reliability, the fitting and the pertinence of the generated rescue prompt scheme are improved, the fitting and the pertinence of the early warning prompt of the rescue personnel, the accuracy and reliability of the early warning prompt, the early warning prompt efficiency, the timeliness and the convenience are improved, the rescue verification accuracy and reliability of the rescue personnel are improved, and thus the safety of the rescue personnel is improved.
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Description

Technical Field

[0001] This invention relates to the field of intelligent device technology, and in particular to an intelligent early warning method and system for rescue personnel in natural disasters. Background Technology

[0002] Natural disasters are objective phenomena that have existed in nature for a long time. In emergency response to various natural disasters, rescue personnel are the core force that goes deep into the disaster area to carry out search and rescue, transfer and disposal work. Their own safety is always a key link that cannot be ignored in the emergency rescue system. Therefore, it is crucial to provide early warning to rescue personnel.

[0003] Currently, the main methods of early warning for rescue personnel involve playing pre-recorded, fixed messages at predetermined times to remind them to be careful. All rescue personnel hear the same set of fixed messages at the same time. Alternatively, it relies on operators at a monitoring center observing the disaster area in real time on screens and deciding whether to play warnings and what specific messages to include based on personal experience and subjective judgment. This subjective judgment is influenced by many factors, leading to discrepancies even under the same conditions for the same disaster area and the same rescuer. Therefore, existing early warning methods suffer from low accuracy and efficiency. It is therefore crucial to provide an early warning method that improves the accuracy and efficiency of warnings for rescue personnel. Summary of the Invention

[0004] This invention provides an intelligent early warning method and system for rescue personnel in natural disasters, which can improve the relevance and pertinence of early warning prompts for rescue personnel in natural disasters, thereby improving the accuracy and efficiency of early warning prompts and ultimately enhancing the safety of rescue personnel.

[0005] To address the aforementioned technical problems, the first aspect of this invention discloses an intelligent early warning method for rescue personnel in natural disasters, the method comprising: When rescuers are conducting rescue operations in a natural disaster area, the rescuers' job level information, rescue equipment information, and the first area information of the current rescue area corresponding to the rescuers, collected by the monitoring equipment, are determined. Based on the rescue post identity level information and the first area information, it is determined whether the rescue personnel meet the preset conditions for being able to go to the current rescue area. When it is determined that the rescue personnel meet the conditions for being able to go to the rescue area, the rescue equipment information and the first area information are used to determine whether the rescue personnel meet the preset conditions for being able to go to the current rescue area. When it is determined that the rescue personnel meet the conditions for the rescue equipment to proceed, a rescue prompt plan for the current rescue area is determined based on the rescue post identity level information, the rescue equipment information, and the first area information; based on the rescue prompt plan, the communication tool equipped on the rescue personnel is controlled to perform the corresponding rescue reminder broadcast operation.

[0006] As an optional implementation, in a first aspect of the present invention, determining whether the rescue personnel meet preset conditions for the availability of rescue equipment for the current rescue area based on the rescue equipment information and the first area information includes: Based on the first area information, information on a first hazardous substance in the current rescue area that can directly harm the rescuers is determined, and information on a second hazardous substance in the current rescue area that can indirectly harm the rescuers is determined based on the first area information. Based on the first hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for facing danger head-on; and based on the second hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for mitigating danger. When it is determined that the rescuer meets the conditions for facing danger and the conditions for mitigating danger, it is determined that the rescuer meets the preset conditions for the rescue equipment to reach the current rescue area. When it is determined that the rescue personnel do not meet the conditions for facing danger head-on and / or the conditions for mitigating danger, it is determined that the rescue personnel do not meet the preset conditions for the rescue equipment to proceed to the current rescue area.

[0007] As an optional implementation, in the first aspect of the present invention, determining whether the rescue personnel meet the preset conditions for facing danger based on the first hazardous substance information and the rescue equipment information includes: Based on the rescue equipment information, determine the clothing protection performance information of the clothing equipped by the rescue personnel, and based on the first hazardous substance information and the clothing protection performance information, determine whether the equipped clothing meets the preset condition of immediate damage upon contact with the hazard. When it is determined that the equipped clothing does not meet the condition of immediate damage upon contact with danger, the sensory experience of the rescuer when the first hazardous substance comes into contact with the equipped clothing is determined based on the protective performance information of the clothing and the information of the first hazardous substance. Based on the sensory experience, it is determined whether the rescuer meets the preset conditions for maintaining normal work. When it is determined that the rescue personnel meet the conditions for maintaining normal work, the protective duration of the equipped clothing in the current rescue scenario is determined based on the first hazardous substance information and the clothing protective performance information, and the predicted rescue duration of the rescue personnel in the current rescue scenario is determined; based on the predicted rescue duration and the protective duration, it is determined whether the equipped clothing meets the preset conditions for continuous resistance to danger. When it is determined that the clothing provided meets the conditions for continuous resistance to danger, it is determined that the rescuer meets the preset conditions for frontal exposure to danger. When it is determined that the clothing provided meets the condition of immediate damage upon contact with danger and / or the rescuer does not meet the condition of maintaining normal work and / or the clothing provided does not meet the condition of continuous resistance to danger, it is determined that the rescuer does not meet the preset condition of frontal exposure to danger.

[0008] As an optional implementation, in the first aspect of the present invention, determining whether the rescue personnel meet the preset hazard mitigation conditions based on the second hazardous substance information and the rescue equipment information includes: Based on the second hazardous substance information, determine the type of the second hazardous substance and its degree of hazard; and based on the rescue equipment information, determine the existing protective equipment equipped by the rescue personnel and its functional information, wherein the equipment functional information includes conventional functional information and special functional information. Based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, determine whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for the rescue personnel. When it is determined that the existing protective equipment meets the shallow hazard handling conditions, based on the material hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, it is determined whether the existing protective equipment meets the preset deep environment hazard elimination conditions for the rescue personnel. When it is determined that the existing protective equipment meets the conditions for eliminating the danger in the deep environment, it is determined that the rescue personnel meet the preset conditions for mitigating the danger. When it is determined that the existing protective equipment does not meet the conditions for responding to shallow environmental hazards and / or does not meet the conditions for eliminating deep environmental hazards, it is determined that the rescue personnel do not meet the preset hazard mitigation conditions.

[0009] As an optional implementation, in the first aspect of the present invention, determining whether the rescue personnel meet the preset conditions for travel to the current rescue area based on the rescue post identity level information and the first area information includes: Based on the first area information, determine the primary and secondary rescue matters in the current rescue area, and based on the first area information, determine the first rescue requirement equipment capacity for the primary rescue matter and the second rescue requirement equipment capacity for the secondary rescue matter; Based on the rescue post identity level information, determine the primary rescue function and other secondary rescue skills of the rescue personnel; Based on the primary rescue function and the first rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling primary rescue matters; and based on the other secondary rescue skills and the second rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling secondary rescue matters. When it is determined that the rescuer meets the primary rescue response conditions and the secondary rescue response conditions, the rescuer is determined to meet the preset conditions for being able to go to the current rescue area based on their rescue identity. When it is determined that the rescue personnel do not meet the conditions for responding to the primary rescue matter and / or the conditions for responding to the secondary rescue matter, it is determined that the rescue personnel do not meet the preset conditions for being eligible to go to the current rescue area.

[0010] As an optional implementation, in a first aspect of the present invention, determining the rescue prompt plan for the current rescue area based on the rescue post identity level information, the rescue equipment information, and the first area information includes: The real-time clothing and protective equipment usage plan for the rescue personnel is determined, and based on the first area information, the clothing and protective equipment usage plan for the current rescue area is determined. The clothing and protective equipment usage plan includes the clothing to be worn and its specific wearing method, and the protective equipment to be used and its specific usage and operation method. Based on the information of the first area and the proposed plan for the use of clothing and protective equipment, the rescue personnel will determine the rescue route and precautions for the current rescue area. Based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information, determine whether the rescue personnel meet the preset adjustment conditions for the use of rescue clothing and equipment; When it is determined that the rescuers meet the conditions for adjusting the use of rescue clothing and equipment, the optimal adjustment method for the rescuers' rescue clothing and equipment is determined based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan; and the rescue prompt plan for the rescuers in the current rescue area is determined based on the optimal adjustment method for the rescue clothing and equipment, the rescue route, and rescue precautions. When it is determined that the rescue personnel do not meet the conditions for using and adjusting the rescue clothing and equipment, a rescue prompt plan for the current rescue area is determined based on the rescue route and rescue precautions.

[0011] As an optional implementation, in the first aspect of the present invention, the method further includes: When it is detected that the rescue personnel are about to go to the next rescue area located around the current rescue area, the second area information of the next rescue area collected by the monitoring equipment is determined, and the next rescue area and the current rescue area meet the preset geographical environment difference relationship and / or rescue division area difference relationship; Determine whether the rescue personnel meet the preset approval conditions for going to the next rescue area; When it is determined that the rescue personnel meet the approved conditions for going to the next rescue area, an adjustment plan for the rescue content of the rescue personnel in the next rescue area is determined based on the first area information and the second area information, and a new plan for the rescue content of the rescue personnel in the next rescue area is determined based on the first area information and the second area information; based on the adjustment plan for the rescue content and the new plan for the rescue content, the communication tools equipped on the rescue personnel are controlled to perform corresponding rescue reminder broadcast operations; When it is determined that the rescue personnel do not meet the approved conditions for going, the reason information for prohibiting the rescue personnel from going to the next rescue area is determined, and based on the reason information for prohibition, the communication tool equipped on the rescue personnel is controlled to perform the corresponding rescue reminder broadcast operation.

[0012] A second aspect of this invention discloses an intelligent early warning system for rescue personnel in natural disasters, the system comprising: The information determination module is used to determine the rescuer's job level information, rescue equipment information, and the first area information of the current rescue area corresponding to the rescuer, which is collected by the monitoring equipment, when the rescuer is carrying out rescue in a natural disaster area. The first judgment module is used to determine whether the rescue personnel meet the preset conditions for going to the current rescue area based on the rescue post identity level information and the first area information. The second judgment module is used to determine whether the rescuer meets the preset conditions for the rescue equipment to go to the current rescue area based on the rescue equipment information and the first area information when the first judgment module determines that the rescuer meets the conditions for the rescuer to go to the rescue area. The prompt content generation module is used to determine the rescue prompt plan for the current rescue area based on the rescue post identity level information, the rescue equipment information, and the first area information when the second judgment module determines that the rescue personnel meet the conditions for the rescue equipment to go there. The rescue broadcast module is used to control the communication tools equipped on the rescue personnel to perform corresponding rescue reminder broadcast operations based on the rescue prompt scheme.

[0013] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines whether the rescue personnel meet the preset conditions for the accessibility of rescue equipment to the current rescue area based on the rescue equipment information and the first area information specifically includes: Based on the first area information, information on a first hazardous substance in the current rescue area that can directly harm the rescuers is determined, and information on a second hazardous substance in the current rescue area that can indirectly harm the rescuers is determined based on the first area information. Based on the first hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for facing danger head-on; and based on the second hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for mitigating danger. When it is determined that the rescuer meets the conditions for facing danger and the conditions for mitigating danger, it is determined that the rescuer meets the preset conditions for the rescue equipment to reach the current rescue area. When it is determined that the rescue personnel do not meet the conditions for facing danger head-on and / or the conditions for mitigating danger, it is determined that the rescue personnel do not meet the preset conditions for the rescue equipment to proceed to the current rescue area.

[0014] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines whether the rescue personnel meet the preset conditions for directly facing danger based on the first hazardous substance information and the rescue equipment information specifically includes: Based on the rescue equipment information, determine the clothing protection performance information of the clothing equipped by the rescue personnel, and based on the first hazardous substance information and the clothing protection performance information, determine whether the equipped clothing meets the preset condition of immediate damage upon contact with the hazard. When it is determined that the equipped clothing does not meet the condition of immediate damage upon contact with danger, the sensory experience of the rescuer when the first hazardous substance comes into contact with the equipped clothing is determined based on the protective performance information of the clothing and the information of the first hazardous substance. Based on the sensory experience, it is determined whether the rescuer meets the preset conditions for maintaining normal work. When it is determined that the rescue personnel meet the conditions for maintaining normal work, the protective duration of the equipped clothing in the current rescue scenario is determined based on the first hazardous substance information and the clothing protective performance information, and the predicted rescue duration of the rescue personnel in the current rescue scenario is determined; based on the predicted rescue duration and the protective duration, it is determined whether the equipped clothing meets the preset conditions for continuous resistance to danger. When it is determined that the clothing provided meets the conditions for continuous resistance to danger, it is determined that the rescuer meets the preset conditions for frontal exposure to danger. When it is determined that the clothing provided meets the condition of immediate damage upon contact with danger and / or the rescuer does not meet the condition of maintaining normal work and / or the clothing provided does not meet the condition of continuous resistance to danger, it is determined that the rescuer does not meet the preset condition of frontal exposure to danger.

[0015] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines whether the rescue personnel meet the preset hazard mitigation conditions based on the second hazardous substance information and the rescue equipment information specifically includes: Based on the second hazardous substance information, determine the type of the second hazardous substance and its degree of hazard; and based on the rescue equipment information, determine the existing protective equipment equipped by the rescue personnel and its functional information, wherein the equipment functional information includes conventional functional information and special functional information. Based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, determine whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for the rescue personnel. When it is determined that the existing protective equipment meets the shallow hazard handling conditions, based on the material hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, it is determined whether the existing protective equipment meets the preset deep environment hazard elimination conditions for the rescue personnel. When it is determined that the existing protective equipment meets the conditions for eliminating the danger in the deep environment, it is determined that the rescue personnel meet the preset conditions for mitigating the danger. When it is determined that the existing protective equipment does not meet the conditions for responding to shallow environmental hazards and / or does not meet the conditions for eliminating deep environmental hazards, it is determined that the rescue personnel do not meet the preset hazard mitigation conditions.

[0016] As an optional implementation, in a second aspect of the present invention, the method by which the first determining module determines whether the rescuer meets the preset conditions for being able to travel to the current rescue area based on the rescue post identity level information and the first area information specifically includes: Based on the first area information, determine the primary and secondary rescue matters in the current rescue area, and based on the first area information, determine the first rescue requirement equipment capacity for the primary rescue matter and the second rescue requirement equipment capacity for the secondary rescue matter; Based on the rescue post identity level information, determine the primary rescue function and other secondary rescue skills of the rescue personnel; Based on the primary rescue function and the first rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling primary rescue matters; and based on the other secondary rescue skills and the second rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling secondary rescue matters. When it is determined that the rescuer meets the primary rescue response conditions and the secondary rescue response conditions, the rescuer is determined to meet the preset conditions for being able to go to the current rescue area based on their rescue identity. When it is determined that the rescue personnel do not meet the conditions for responding to the primary rescue matter and / or the conditions for responding to the secondary rescue matter, it is determined that the rescue personnel do not meet the preset conditions for being eligible to go to the current rescue area.

[0017] As an optional implementation, in a second aspect of the present invention, the method by which the prompt content generation module determines the rescue prompt plan for the current rescue area based on the rescue post identity level information, the rescue equipment information, and the first area information specifically includes: The real-time clothing and protective equipment usage plan for the rescue personnel is determined, and based on the first area information, the clothing and protective equipment usage plan for the current rescue area is determined. The clothing and protective equipment usage plan includes the clothing to be worn and its specific wearing method, and the protective equipment to be used and its specific usage and operation method. Based on the information of the first area and the proposed plan for the use of clothing and protective equipment, the rescue personnel will determine the rescue route and precautions for the current rescue area. Based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information, determine whether the rescue personnel meet the preset adjustment conditions for the use of rescue clothing and equipment; When it is determined that the rescuers meet the conditions for adjusting the use of rescue clothing and equipment, the optimal adjustment method for the rescuers' rescue clothing and equipment is determined based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan; and the rescue prompt plan for the rescuers in the current rescue area is determined based on the optimal adjustment method for the rescue clothing and equipment, the rescue route, and rescue precautions. When it is determined that the rescue personnel do not meet the conditions for using and adjusting the rescue clothing and equipment, a rescue prompt plan for the current rescue area is determined based on the rescue route and rescue precautions.

[0018] As an optional implementation, in a second aspect of the present invention, the information determination module is further configured to determine, when it is detected that the rescue personnel are about to go to the next rescue area located around the current rescue area, the second area information of the next rescue area collected by the monitoring device, wherein the next rescue area and the current rescue area satisfy a preset geographical environment difference relationship and / or rescue division area difference relationship; The system also includes: The third judgment module is used to determine whether the rescue personnel meet the preset approval conditions for going to the next rescue area; The prompt content generation module is also used to determine, based on the first area information and the second area information, the adjustment plan for the rescue content of the next rescue area by the rescuer when the third judgment module determines that the rescuer meets the approved conditions for going, and to determine the addition plan for the rescue content of the next rescue area by the rescuer based on the first area information and the second area information. The rescue broadcast module is also used to control the communication tools equipped on the rescue personnel to perform corresponding rescue reminder broadcast operations based on the rescue-related content adjustment plan and the rescue-related content addition plan; The prompt content generation module is also used to determine the reason information prohibiting the rescuer from going to the next rescue area when the third judgment module determines that the rescuer does not meet the approved conditions for going. The rescue broadcast module is also used to control the communication tools equipped on the rescue personnel to perform corresponding rescue reminder broadcast operations based on the information of the reason for prohibition.

[0019] A third aspect of this invention discloses another intelligent early warning system for rescue personnel applied to natural disasters, the system comprising: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the intelligent early warning method for rescue personnel in natural disasters disclosed in the first aspect of the present invention.

[0020] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute the intelligent early warning method for rescue personnel in natural disasters disclosed in the first aspect of the present invention.

[0021] Compared with the prior art, the embodiments of the present invention have the following beneficial effects: In this embodiment of the invention, when rescuers are conducting rescue operations in a natural disaster area, the rescuer's rescue post level information and rescue equipment information are determined, and the first area information of the current rescue area corresponding to the rescuer, collected by monitoring equipment, is determined. Based on the rescue post level information and the first area information, it is determined whether the rescuer meets the preset conditions for being able to go to the current rescue area. When it is determined that the rescuer meets the conditions for being able to go to the rescue area, based on the rescue equipment information and the first area information, it is determined whether the rescuer meets the preset conditions for being able to go to the current rescue area with rescue equipment. When it is determined that the rescuer meets the conditions for being able to go to the rescue area with rescue equipment, based on the rescue post level information, the rescue equipment information, and the first area information, a rescue prompt plan for the current rescue area is determined. Based on the rescue prompt plan, the communication tool equipped on the rescuer is controlled to perform the corresponding rescue reminder broadcast operation. As can be seen, this invention can determine whether rescuers meet the conditions for their rescue identity and equipment to proceed to the current rescue area based on their rescue post level information, rescue equipment information, and the first area information of the current rescue area they are about to reach. If the conditions are met, a rescue prompt plan for the current rescue area is generated, and the communication tool equipped on the rescuer is controlled to broadcast the rescue prompt plan. This is beneficial to improving the comprehensiveness and rationality of intelligent early warning methods for rescuers applied to natural disasters, improving the accuracy, reliability, relevance, and relevance of the generated rescue prompt plan, thereby improving the relevance and relevance of the early warning prompts for rescuers, improving the accuracy and reliability of the early warning prompts for rescuers, and improving the efficiency, timeliness, and convenience of the early warning prompts for rescuers. In addition, it is beneficial to improving the accuracy and reliability of the rescue identity verification of rescuers and the rescue equipment verification, thereby improving the safety of rescuers. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a flowchart illustrating an intelligent early warning method for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 2 This is a flowchart illustrating another intelligent early warning method for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 3 This is a schematic diagram of the structure of an intelligent early warning system for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 4 This is a schematic diagram of another intelligent early warning system for rescue personnel applied to natural disasters, as disclosed in an embodiment of the present invention. Figure 5 This is a schematic diagram of the structure of another intelligent early warning system for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Detailed Implementation

[0024] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0025] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.

[0026] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0027] This invention discloses an intelligent early warning method and system for rescue personnel in natural disasters. Based on the rescue personnel's job level, equipment information, and the first area information of the upcoming rescue zone, it determines whether the rescue personnel meet the eligibility requirements for their rescue status and equipment. If so, it generates a rescue alert plan for the current rescue area and controls the communication tool equipped on the rescue personnel to broadcast the alert. This improves the comprehensiveness and rationality of intelligent early warning methods for natural disaster rescue personnel, enhances the accuracy, reliability, relevance, and targeting of the generated rescue alert plans, thereby improving the relevance and targeting of early warning alerts, the accuracy and reliability of early warning alerts, and the efficiency, timeliness, and convenience of early warning alerts. Furthermore, it improves the accuracy and reliability of rescue personnel's rescue status and equipment verification, thus enhancing the safety of rescue personnel. Detailed descriptions follow.

[0028] Example 1 Please see Figure 1 , Figure 1 This is a flowchart illustrating an intelligent early warning method for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 1 The described method can be applied to an intelligent early warning system for natural disaster rescue personnel. This system may include a server, which may be a local server or a cloud server; this embodiment of the invention is not limited to any particular server. Figure 1 As shown, this intelligent early warning method for rescue personnel applied to natural disasters includes the following operations: 101. When rescuers are conducting rescue operations in a natural disaster area, determine the rescuers' job level information, rescue equipment information, and determine the first area information of the current rescue area corresponding to the rescuers collected by the monitoring equipment.

[0029] Optionally, the rescue post identity level information may include, but is not limited to, rescue post identity information and rescue post level information; further, rescue post identity information can be exemplified by: medical personnel, firefighters, security personnel, professional search and rescue personnel, engineering and emergency repair personnel, mine rescue teams, hazardous materials handling personnel, volunteers and auxiliary personnel, logistics and command personnel, etc.; rescue post level information can be exemplified by: basic rescue post, intermediate rescue post, senior rescue post, experienced rescue post, etc. Furthermore, a basic rescue post may simply be one with a superficial grasp of the job's basic skills, while an experienced rescue post may not only be proficient in the comprehensive skills of the job but also possess further knowledge of other job functions (for example, experienced medical personnel are not only proficient in rescue techniques but also in disaster characteristic identification, hazardous materials handling, etc.). This embodiment of the invention does not impose any limitations.

[0030] Optionally, rescue equipment information, for example, includes information on the clothing and protective equipment that rescuers are wearing, and information on the clothing and protective equipment that rescuers carry with them, etc., but this embodiment of the invention does not limit the scope of the information.

[0031] Optionally, the first area information may include, but is not limited to, one or more of the following: geological information, environmental information, geographical condition information, weather information, and other information that can reflect the current situation of the rescue area. This embodiment of the invention does not limit the information.

[0032] 102. Based on the rescue post's identity level information and the first area information, determine whether the rescue personnel meet the preset conditions for going to the current rescue area.

[0033] Optionally, for example, the reachable areas of medical personnel and firefighters are different, or the reachable areas of senior medical personnel who are also skilled in search and rescue are different from those of ordinary medical personnel at the grassroots level. The same logic applies to other situations, and the embodiments of the present invention are not limited.

[0034] Alternatively, the method may further include the following operations: When it is determined that the rescuer does not meet the conditions for being allowed to go to the rescue area, a first prohibition notice is issued. This first prohibition notice indicates that the rescuer's rescue status cannot guarantee safe rescue in the current rescue area. Based on the first prohibition notice, the communication tools equipped on the rescuer are controlled to perform corresponding rescue reminder broadcast operations.

[0035] Optionally, the rescue personnel meet the conditions of being able to go to the current rescue area based on their rescue identity. This can be understood as the rescue personnel possessing the rescue knowledge / rescue identity to carry out safe rescue work in the current rescue area. This embodiment of the invention does not limit this.

[0036] 103. When it is determined that the rescue personnel meet the conditions for being eligible to go to the rescue area, based on the rescue equipment information and the first area information, determine whether the rescue personnel meet the preset conditions for being eligible to go to the current rescue area.

[0037] Optionally, examples can be given: for instance, rescuers can access areas with different geological conditions by wearing different shoes, such as professional river tracing shoes versus ordinary flip-flops; rescuers can also rely on their naked eyes or wear special glasses to see clearly and access areas with different visibility; rescuers wearing fire-resistant and chemical-resistant clothing can safely access different areas than those wearing ordinary clothing; and rescuers wearing advanced air purification equipment can safely access smoggy and hazy areas than those wearing only masks. Other situations can be deduced similarly, and this embodiment of the invention does not impose any limitations.

[0038] Alternatively, the method may further include the following operations: When it is determined that the rescuers do not meet the conditions for the rescue equipment to proceed, a second prohibition notice is issued, indicating that the rescuers' equipment cannot guarantee safe rescue operations in the current rescue area. Based on the second prohibition notice, the communication tools equipped on the rescuers are controlled to perform corresponding rescue reminder broadcasts.

[0039] Optionally, the rescuers meet the condition that the rescue equipment can reach the current rescue area. This can be understood as the rescuers' rescue equipment being able to ensure their safety while carrying out rescue work in the current rescue area. This embodiment of the invention does not impose any limitations on this.

[0040] 104. When it is determined that the rescue personnel meet the conditions for the rescue equipment to proceed, the rescue personnel shall determine the rescue prompt plan for the current rescue area based on the rescue post identity level information, rescue equipment information and first area information; based on the rescue prompt plan, the communication tools equipped on the rescue personnel shall be controlled to perform the corresponding rescue reminder broadcast operation.

[0041] Optionally, the rescue prompt plan may include, but is not limited to, one or more of the following: rescue route plan, rescue time plan, rescue clothing and specific wearing methods, rescue protective equipment and specific wearing and usage methods, precautions for advancing the rescue, and other rescue-related prompts. This embodiment of the invention does not limit these.

[0042] Optionally, based on the above rescue alert scheme, the communication tool equipped on the rescuer is controlled to perform the corresponding rescue alert broadcast operation. For example, the communication tool equipped on the rescuer is controlled to play the rescue alert scheme. This embodiment of the invention is not limited.

[0043] As can be seen, the intelligent early warning method for rescue personnel applied to natural disasters described in this embodiment of the invention can determine whether a rescuer meets the conditions for being eligible to go to the current rescue area based on the rescuer's job level information, rescue equipment information, and the first area information of the current rescue area to which they are about to go. If the conditions are met, a rescue prompt plan for the current rescue area is generated, and the communication tool equipped on the rescuer is controlled to broadcast the rescue prompt plan. This is beneficial to improving the comprehensiveness and rationality of the intelligent early warning method for rescue personnel applied to natural disasters, improving the accuracy, reliability, relevance, and relevance of the generated rescue prompt plan, thereby improving the relevance and relevance of the early warning prompts for rescue personnel, improving the accuracy and reliability of the early warning prompts for rescue personnel, improving the efficiency, timeliness, and convenience of the early warning prompts for rescue personnel, and improving the accuracy and reliability of the rescue verification of the rescuer's rescue identity and rescue equipment, thus improving the safety of rescue personnel.

[0044] In an optional embodiment, the above-mentioned determination of whether rescue personnel meet the preset conditions for the availability of rescue equipment for the current rescue area based on the rescue equipment information and the first area information may include: Based on the information from the first area, identify the first hazardous substance in the current rescue area that can directly harm rescuers, and based on the information from the first area, identify the second hazardous substance in the current rescue area that can indirectly harm rescuers. Based on the information on the first hazardous substance and the rescue equipment, determine whether the rescue personnel meet the preset conditions for facing the danger head-on; and based on the information on the second hazardous substance and the rescue equipment, determine whether the rescue personnel meet the preset conditions for mitigating the danger. When it is determined that the rescuers meet the conditions for facing danger head-on and the conditions for mitigating danger, it is determined that the rescuers meet the preset conditions for the rescue equipment to proceed to the current rescue area. When it is determined that the rescue personnel do not meet the conditions for directly facing danger and / or do not meet the conditions for mitigating danger, it is determined that the rescue personnel do not meet the preset conditions for the rescue equipment to proceed to the current rescue area.

[0045] Optionally, the first hazardous substance in the current rescue area that can directly harm rescuers may include, for example, rocks, sparks, insects, chemicals, etc.; the second hazardous substance in the current rescue area that can indirectly harm rescuers may include, for example, smoke, rain, fog, chemical particulate matter, etc.; furthermore, the hazardous substance information may include, but is not limited to, one or more of the following: the specific material properties of the hazardous substance, the specific concentration and quantity of the substance, the specific material conditions, and other real-time information that can reflect the hazardous substance. This embodiment of the invention does not limit the scope of the information.

[0046] Optionally, based on the information of the first hazardous substance and the information of the rescue equipment, it is determined whether the rescuers meet the preset conditions for being able to withstand danger. For example, whether a stone can tear clothes, whether a stone will cause pain to the rescuers, whether a spark can melt clothes, whether clothes will be damaged in a short period of time but will be damaged in a long period of time, whether a single hazardous substance will not cause damage but a large number of hazardous substances will cause damage at the same time (for example, a single insect / spark will not cause damage but a large number of insects / a huge fireball may cause damage), etc. Other situations can be obtained in the same way. This embodiment of the invention does not limit the scope of the invention.

[0047] Optionally, the above-mentioned determination of whether rescuers meet the preset hazard mitigation conditions based on the information of the second hazardous substance and the information of rescue equipment can be illustrated by, for example, whether the rescuers are equipped with special glasses and whether the visibility of the special glasses is sufficient for the rescuers to clearly see the current rescue area, whether the rescuers are equipped with professional smoke filtering equipment and whether the professional smoke filtering equipment is capable of filtering the smoke in the current rescue area to the air quality that is safe for human beings to breathe, etc. Other situations can be obtained in the same way, and the embodiments of the present invention are not limited.

[0048] As can be seen, this optional embodiment can determine the result of meeting the frontal hazard-bearing conditions based on the first hazardous substance information and the rescue equipment information, and determine the result of meeting the hazard mitigation conditions based on the second hazardous substance information and the rescue equipment information, thereby determining the result of meeting the conditions for the rescue equipment to proceed. This is beneficial to improving the comprehensiveness and rationality of the method for determining the results of meeting the conditions for the rescue equipment to proceed, and to improving the diversity and flexibility of the method for determining the results of meeting the conditions for the rescue equipment to proceed. This is beneficial to improving the accuracy and reliability of the determined results of meeting the conditions for the equipment to proceed, and thus to improving the accuracy and reliability of subsequent rescue operations based on the rescue equipment.

[0049] In another optional embodiment, the determination of whether rescue personnel meet the preset conditions for facing danger based on the first hazardous substance information and rescue equipment information may include: Based on the information on rescue equipment, determine the protective performance information of the clothing worn by rescuers, and based on the information on the first hazardous substance and the protective performance information of the clothing, determine whether the clothing meets the preset condition of immediate damage upon contact with the hazard. When it is determined that the clothing does not meet the condition of immediate damage upon contact with a hazard, the sensory experience of the rescuers when the first hazard comes into contact with the clothing is determined based on the clothing's protective performance information and the information of the first hazard. Based on the sensory experience, it is determined whether the rescuers meet the preset conditions for maintaining normal work. When it is determined that the rescuers meet the conditions for maintaining normal work, the duration of protection provided by the equipped clothing in the current rescue scenario is determined based on the information on the first hazardous substance and the protective performance information of the clothing, and the predicted rescue duration required for the rescuers in the current rescue scenario is also determined; based on the predicted rescue duration and the duration of protection, it is determined whether the equipped clothing meets the preset conditions for continuous resistance to hazards. When it is determined that the clothing provided meets the conditions for continuous resistance to danger, it is confirmed that the rescuers meet the pre-set conditions for frontal exposure to danger. When it is determined that the clothing provided meets the condition of immediate damage upon contact with danger and / or the rescuer does not meet the condition of maintaining normal working conditions and / or the clothing provided does not meet the condition of continuously resisting danger, it is determined that the rescuer does not meet the pre-set condition of directly withstanding danger.

[0050] Optionally, the protective performance information of clothing may include, but is not limited to, one or more of the following: heat protection and flame retardancy, impact resistance, resistance to physical damage (such as tear strength, tensile / breaking strength, abrasion resistance, puncture resistance / repellency, anti-pilling, etc.), chemical protection (such as acid and alkali resistance / chemical corrosion resistance, water / oil / fogging resistance, solvent resistance, etc.), comfort performance, biological protection (such as antibacterial / mildew resistance, mite / insect resistance, antiviral, etc.), electrical / static properties (such as antistatic properties, electromagnetic shielding, etc.), optical / radiation protection (such as UV resistance, light fastness, reflectivity / visibility, etc.), low temperature resistance / cold resistance, self-cleaning / easy stain removal, etc., and the embodiments of the present invention are not limited thereto.

[0051] Further optionally, the determination of whether the clothing meets the preset condition of immediate damage upon contact with the hazard, based on the information of the first hazardous substance and the protective performance information of the clothing, may include: Based on the information on the first hazardous substance and the protective performance information of the clothing, determine the reaction phenomenon that occurs when the first hazardous substance comes into contact with the clothing. The reaction phenomenon includes one or more of the following: positive reaction, negative reaction, and no reaction. When contact produces a reaction, including a positive reaction or no reaction, it is determined that the clothing does not meet the preset condition of immediate damage upon dangerous contact. When contact produces a reaction phenomenon, including a reverse phenomenon, the severity of damage is determined based on the information of the first hazardous substance and the protective performance information of the clothing; it is then determined whether the severity of damage is greater than or equal to a preset severity threshold; if the determination result is yes, it is determined that the clothing meets the preset condition for immediate damage upon contact with a hazardous substance; if the determination result is no, it is determined that the clothing does not meet the preset condition for immediate damage upon contact with a hazardous substance.

[0052] Further optional examples include positive phenomena, such as the first hazardous substance making the clothing perform better after contact with it; and negative phenomena, such as the clothing being corroded and damaged by the chemical substance after contact with it. This invention does not limit the specific examples.

[0053] Optionally, the sensory experience of rescuers when the first hazardous substance comes into contact with the clothing can be described, for example: whether the rescuers have any abnormal sensory experience (such as pain, sourness, or excessive heat) when the first hazardous substance comes into contact with the clothing. Furthermore, the degree of abnormality of the sensory experience and whether it is tolerable for the rescuers are not limited to, such as only a very slight pain that will not affect the rescuers' work, or a serious injury that may cause the rescuers to faint and require emergency treatment.

[0054] Further, optionally, the above-mentioned judgment based on sensory perception as to whether rescue personnel meet the preset conditions for maintaining normal work may include: Based on sensory perception, determine whether rescuers need to suffer physical injury; When it is determined that a rescuer has suffered a physical injury, it is determined whether the physical injury meets the preset additional treatment conditions; if it is determined that the physical injury meets the preset additional treatment conditions, it is determined that the rescuer does not meet the preset conditions for maintaining normal work. When it is determined that the rescue personnel have no physical injury and / or when it is determined that the physical injury does not meet the conditions for additional treatment, it is determined that the rescue personnel meet the preset conditions for maintaining normal work.

[0055] Optionally, the duration of protection provided by the clothing in the current rescue scenario can be described, for example, the duration during which the clothing can remain undamaged and free from holes under repeated contact with the primary hazardous substance. As the duration of protection, this embodiment of the invention does not limit the specific duration.

[0056] Further optionally, based on the predicted rescue duration and the duration of protection, determining whether the equipped clothing meets the preset conditions for continuous resistance to danger may include: Determine whether the duration of protection is greater than or equal to the predicted rescue duration; if the determination is yes, determine that the equipped clothing meets the preset conditions for continuous resistance to danger; if the determination is no, determine that the equipped clothing does not meet the preset conditions for continuous resistance to danger.

[0057] As can be seen, this optional embodiment can determine the result of immediate damage upon contact with danger based on the information of the first hazardous substance and the protective performance information of the clothing, determine the result of maintaining normal working conditions based on the sensory experience of the rescuers when the first hazardous substance touches the clothing, and determine the result of continuously resisting danger based on the predicted rescue time and the duration of protection, thereby obtaining the result of frontal hazard resistance. This is beneficial to improving the comprehensiveness, rationality, and progressiveness of the method for determining the result of frontal hazard resistance, and to improving the diversity and flexibility of the sub-determination methods used to determine the result of frontal hazard resistance, thereby improving the accuracy and reliability of the determined result of frontal hazard resistance.

[0058] In another optional embodiment, the above-mentioned determination of whether rescue personnel meet the preset hazard mitigation conditions based on the second hazardous substance information and rescue equipment information may include: Based on the information on the second hazardous substance, determine the type of the second hazardous substance and its degree of hazard. Based on the information on the rescue equipment, determine the existing protective equipment equipped by the rescue personnel and its functional information, including conventional functional information and special functional information. Based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, determine whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for rescue personnel. When it is determined that the existing protective equipment meets the conditions for handling shallow hazards, based on the hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, it is determined whether the existing protective equipment meets the preset conditions for eliminating deep environmental hazards for rescue personnel. When it is determined that the protective equipment meets the conditions for eliminating dangers in deep environments, it is confirmed that the rescue personnel meet the pre-set conditions for hazard mitigation. When it is determined that existing protective equipment does not meet the conditions for responding to shallow environmental hazards and / or existing protective equipment does not meet the conditions for eliminating deep environmental hazards, it is determined that the rescue personnel do not meet the pre-set hazard mitigation conditions.

[0059] Optionally, the conventional and special functional information of existing protective equipment can be illustrated as follows: For example, if the existing protective equipment is a gas filtration device, the conventional functional information can be the gas filtration function, and the special functional information can be the function of completely purifying harmful gases into healthy gases that can be absorbed by the human body; or if the existing protective equipment is special protective glasses, the conventional functional information can be physical eye protection, and the special functional information can be the ability to see clearly outside the smog (such as filtering strong light and resisting smog). Other cases can be obtained in the same way, and the embodiments of the present invention are not limited.

[0060] Further optionally, the above-mentioned determination of whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards to rescue personnel based on the type of the second hazardous substance and the equipment function information of the existing protective equipment may include: Based on the type of the second hazardous substance, determine the first required equipment function for routinely responding to this type of second hazardous substance; determine whether the routine function information of the existing protective equipment includes the first required equipment function; if the determination result is yes, determine that the existing protective equipment meets the preset shallow environment hazard response conditions for rescue personnel; if the determination result is no, determine that the existing protective equipment does not meet the preset shallow environment hazard response conditions for rescue personnel.

[0061] Furthermore, for example, when the second hazardous substance is a harmful gas, if the existing protective equipment includes a gas filtration function, then the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for rescue personnel; for example, when the second hazardous substance contains a substance that causes physical or chemical damage to the eyes, if the existing protective equipment includes a goggles protection function, then the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for rescue personnel. The same principle applies to other cases, and the embodiments of the present invention are not limited.

[0062] Further optionally, the above-mentioned determination of whether the existing protective equipment meets the preset conditions for eliminating deep-environment hazards for rescue personnel based on the hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment may include: Based on the degree of hazard of the second hazardous substance, determine the second required equipment function that can completely avoid the impact of the second hazardous substance on rescuers; determine whether the special function information of the existing protective equipment includes the second required equipment function; if the determination result is yes, determine that the existing protective equipment meets the preset deep environment hazard elimination conditions for rescuers; if the determination result is no, determine that the existing protective equipment does not meet the preset deep environment hazard elimination conditions for rescuers.

[0063] Furthermore, for example: when the second hazardous substance is a harmful gas and inhaling it is very harmful to the human body, if the existing protective equipment includes the function of completely purifying the harmful gas into a healthy gas that can be absorbed by the human body, then the existing protective equipment meets the preset conditions for eliminating deep environmental hazards for rescue personnel; for example, when the second hazardous substance contains a substance that causes physical or chemical damage to the eyes and completely affects the safe movement of personnel, if the existing protective equipment includes the ability to filter obstructions and see clearly outside the obstructions (such as filtering strong light, resisting smog, etc.), then the existing protective equipment meets the preset conditions for eliminating deep environmental hazards for rescue personnel. Other situations can be understood in the same way, and the embodiments of the present invention are not limited.

[0064] As can be seen, this optional embodiment can determine the results of meeting the shallow environment hazard response conditions based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, and determine the results of meeting the deep environment hazard elimination conditions based on the material hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, thereby determining the results of meeting the hazard mitigation conditions. This is beneficial to improving the comprehensiveness, rationality, and progressiveness of the hazard mitigation condition determination method, and to improving the diversity and flexibility of the sub-determination methods used to determine the results of meeting the hazard mitigation conditions, thereby improving the accuracy and reliability of the determined results of meeting the hazard mitigation conditions.

[0065] In another optional embodiment, the above-mentioned determination of whether rescue personnel meet the preset conditions for travel to the current rescue area based on the rescue post identity level information and the first area information may include: Based on the information from the first area, determine the primary and secondary rescue matters in the current rescue area, and based on the information from the first area, determine the first rescue requirement equipment capacity for the primary rescue matters and the second rescue requirement equipment capacity for the secondary rescue matters. Based on the rescue post's identity level information, determine the primary rescue functions and other secondary rescue skills that rescue personnel should possess; Based on the primary rescue function and the availability of personnel for the first rescue need, determine whether the rescue personnel meet the pre-set conditions for responding to the primary rescue matters; and based on other secondary rescue skills and the availability of personnel for the second rescue need, determine whether the rescue personnel meet the pre-set conditions for responding to the secondary rescue matters. When it is determined that the rescuers meet the conditions for responding to primary rescue matters and the conditions for responding to secondary rescue matters, the rescuers are confirmed to meet the preset conditions for being able to go to the current rescue area based on their rescue identity. When it is determined that the rescue personnel do not meet the conditions for responding to primary rescue matters and / or secondary rescue matters, it is determined that the rescue personnel do not meet the preset conditions for being able to go to the current rescue area.

[0066] Optional rescue items, for example: disaster environmental rescue types (such as fire fighting, flood control, etc.), disaster personnel rescue types, disaster personnel search and transportation types, etc., are not limited in the embodiments of this invention.

[0067] Optionally, the aforementioned primary rescue items and their first rescue needs' equipment capabilities, and secondary rescue items and their second rescue needs' equipment capabilities, can be illustrated with examples: if the primary rescue item is disaster environment rescue and the secondary rescue item is disaster personnel treatment, then directly treating people in the disaster area and transporting them to a safe area for treatment are completely different; furthermore, medical personnel entering the disaster area need to consider both treatment capabilities and disaster response capabilities, while firefighters need to consider both firefighting and search personnel knowledge and disaster personnel transportation knowledge, etc. The same logic applies to other situations, and this embodiment of the invention does not impose limitations.

[0068] Optionally, the primary rescue function and other secondary rescue skills of the aforementioned rescue personnel can be illustrated as follows: the primary rescue function of senior medical personnel is to treat the wounded, and other secondary rescue skills may include the ability to detect / handle abnormal environments; while the primary rescue function of grassroots medical personnel is to treat the wounded, and they do not have any secondary rescue skills. The same applies to other situations, and this embodiment of the invention does not impose any limitations.

[0069] Further optionally, the above-mentioned determination of whether rescue personnel meet the preset conditions for responding to primary rescue matters based on their primary rescue functions and the availability of personnel for the first rescue need may include: Determine whether the personnel responsible for rescue have the necessary equipment to meet the primary rescue needs; if the determination is yes, confirm that the rescue personnel meet the pre-set conditions for responding to the primary rescue matters; if the determination is no, confirm that the rescue personnel do not meet the pre-set conditions for responding to the primary rescue matters.

[0070] Further optionally, the above-mentioned determination of whether rescue personnel meet the preset conditions for responding to secondary rescue matters based on other supplementary rescue skills and the availability of secondary rescue capabilities may include: Determine whether other secondary rescue skills provide the necessary equipment for secondary rescue needs; if the determination is yes, confirm that the rescue personnel meet the pre-set conditions for handling secondary rescue matters; if the determination is no, confirm that the rescue personnel do not meet the pre-set conditions for handling secondary rescue matters.

[0071] As can be seen, this optional embodiment can determine the fulfillment of the conditions for responding to primary rescue matters based on the primary rescue function and the equipment capability for the first rescue need, and determine the fulfillment of the conditions for responding to secondary rescue matters based on other secondary rescue skills and the equipment capability for the second rescue need, thereby determining the fulfillment of the conditions for rescue identity to go. This is beneficial to improving the comprehensiveness, rationality, and progressiveness of the method for determining the fulfillment of the conditions for rescue identity to go, and is beneficial to improving the diversity and flexibility of the sub-determination methods used to determine the fulfillment of the conditions for rescue identity to go, thereby improving the accuracy and reliability of the determined conditions for rescue identity to go.

[0072] In another optional embodiment, the above-mentioned determination of the rescue prompt plan for the current rescue area based on the rescue post identity level information, rescue equipment information, and first area information may include: Determine the real-time clothing and protective equipment usage plan for rescue personnel, and based on the information of the first area, determine the clothing and protective equipment usage plan for the current rescue area. The clothing and protective equipment usage plan includes the clothing to be worn and its specific wearing method, and the protective equipment to be used and its specific usage and operation method. Based on the information from the first area and the plan for the use of clothing and protective equipment, determine the rescue personnel's advance route and rescue precautions for the current rescue area; Based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for adjusting the use of rescue clothing and equipment. When it is determined that the rescuers meet the conditions for adjusting their rescue clothing and equipment, the optimal adjustment method for the rescuers' rescue clothing and equipment is determined based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan; based on the optimal adjustment method for the rescue clothing and equipment, the rescue route and rescue precautions, a rescue prompt plan for the current rescue area is determined. When it is determined that the rescuers do not meet the conditions for adjusting the use of rescue clothing and equipment, a rescue prompt plan for the current rescue area is determined based on the rescue route and rescue precautions.

[0073] Further optionally, the above-mentioned determination of whether rescuers meet the preset adjustment conditions for the use of rescue clothing and equipment based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information may include: Based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan, determine whether the rescuers' current clothing and protective equipment meet the preset object compatibility conditions. When it is determined that the object compatibility conditions are met, it is determined whether the rescuer's current clothing and protective equipment meet the preset usage compatibility conditions. When it is determined that the usage adaptation conditions are met, it is determined that the rescuers do not meet the preset conditions for adjusting the use of rescue clothing and equipment. When it is determined that the conditions for matching the object are not met, the clothing and protective equipment of the rescuers can be adjusted to meet the conditions based on the usage plan of the required clothing and protective equipment and the information on the rescue equipment. When it is determined that the adjustment conditions are met and / or the usage adaptation conditions are not met, the rescue personnel are determined to meet the preset adjustment conditions for the use of rescue clothing and equipment.

[0074] Furthermore, the object adaptation condition can be understood as the clothing and protective equipment currently worn and used by the rescuers being compatible with the required clothing and protective equipment; the usage method adaptation condition can be understood as the way the rescuers wear their clothing and the way they use their protective equipment being compatible with the requirements; the adjustment-based adaptation condition can be understood as, although the clothing and protective equipment currently worn by the rescuers are not compatible with the requirements, there are compatible clothing and protective equipment in the rescuers' personal bags, so only the clothing and protective equipment need to be changed. This embodiment of the invention does not limit this.

[0075] Optionally, the optimal adjustment method for rescuers' rescue clothing and equipment may include, but is not limited to, one or more of the specific rescue clothing and equipment that needs to be adjusted, the order and operation of adjusting the rescue clothing and equipment, and the way the rescue clothing and equipment are used. This embodiment of the invention does not limit these methods.

[0076] Optionally, based on the information of the first area and the required clothing and protective equipment usage plan, the rescue personnel determine the rescue route and rescue precautions for the current rescue area. For example, the rescue route can be based on the information of the first area to avoid dangerous locations and proceed along a safe route, or it can be a rescue route generated based on the emergency rescue points in the first area. The rescue precautions can be the expected rescue methods, rescue content, and special precautions for different rescue points, etc., which are not limited in this embodiment of the invention.

[0077] As can be seen, this optional embodiment can match the corresponding rescue prompt scheme determination method according to whether the rescuer meets the conditions for using rescue clothing and equipment or not. This is conducive to improving the comprehensiveness and rationality of the rescue prompt scheme determination method, as well as the diversity, flexibility and pertinence of the rescue prompt scheme determination method. In turn, it is conducive to improving the accuracy and reliability of the determined rescue prompt scheme, thereby improving the accuracy and reliability of rescue prompts based on the rescue prompt scheme.

[0078] Example 2 Please see Figure 2 , Figure 2 This is a flowchart illustrating another intelligent early warning method for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 2 The described method can be applied to an intelligent early warning system for natural disaster rescue personnel. This system may include a server, which may be a local server or a cloud server; this embodiment of the invention is not limited to any particular server. Figure 2 As shown, this intelligent early warning method for rescue personnel applied to natural disasters includes the following operations: 201. When rescuers are conducting rescue operations in a natural disaster area, determine the rescuers' job level information, rescue equipment information, and determine the first area information of the current rescue area corresponding to the rescuers collected by the monitoring equipment.

[0079] 202. Based on the rescue post identity level information and the first area information, determine whether the rescue personnel meet the preset conditions for going to the current rescue area.

[0080] 203. When it is determined that the rescue personnel meet the conditions for being eligible to go to the rescue area, based on the rescue equipment information and the first area information, determine whether the rescue personnel meet the preset conditions for being eligible to go to the current rescue area.

[0081] 204. When it is determined that the rescue personnel meet the conditions for the rescue equipment to proceed, the rescue personnel shall determine the rescue prompt plan for the current rescue area based on the rescue post identity level information, rescue equipment information and first area information; based on the rescue prompt plan, the communication tools equipped on the rescue personnel shall be controlled to perform the corresponding rescue reminder broadcast operation.

[0082] 205. When it is detected that rescuers are about to go to the next rescue area located around the current rescue area, determine the second area information of the next rescue area collected by the monitoring equipment. The next rescue area and the current rescue area meet the preset geographical environment difference relationship and / or rescue division area difference relationship.

[0083] Optionally, the geographical environment difference relationship can be understood as the current rescue area and the next rescue area having significant differences in geology, environment, visibility, geographical conditions, etc., which will change the requirements for the rescue personnel's rescue identity and rescue equipment; the rescue division area difference relationship can be understood as the current rescue area and the next rescue area belonging to two different areas according to the rescue arrangement, requiring further evaluation of the rescue personnel's rescue identity and rescue equipment. This embodiment of the invention does not limit this.

[0084] 206. Determine whether the rescue personnel meet the preset approval conditions for going to the next rescue area. If the determination result is yes, proceed to step 207; if the determination result is no, proceed to step 208.

[0085] Further optionally, the above determination of whether rescue personnel meet the preset approved conditions for going to the next rescue area may include: Determine whether the rescue personnel meet the preset conditions for their rescue identity and equipment to proceed to the next rescue area; if the conditions are met, determine that the rescue personnel meet the preset conditions for approval to proceed to the next rescue area; if the conditions are not met, determine that the rescue personnel do not meet the preset conditions for approval to proceed to the next rescue area; and / or, Determine whether a dispatch instruction has been received regarding the assignment of rescue personnel to the next rescue area; if a dispatch instruction has been received, determine that the rescue personnel meet the preset approval conditions for dispatching to the next rescue area; if a dispatch instruction has not been received, determine that the rescue personnel do not meet the preset approval conditions for dispatching to the next rescue area; and / or, Determine whether the first level of urgency / demand for the identified next rescue area is greater than or equal to the second level of urgency / demand for the identified current rescue area; if the first level of urgency / demand is greater than or equal to the second level, determine that the rescue personnel meet the preset approval conditions for going to the next rescue area; if the first level of urgency / demand is less than the second level, determine that the rescue personnel do not meet the preset approval conditions for going to the next rescue area; and / or, The system determines whether the rescuer's first professional rescue suitability for the next rescue area is greater than or equal to the rescuer's second professional rescue suitability for the current rescue area. If the first professional rescue suitability is greater than or equal to the second professional rescue suitability, the system determines that the rescuer meets the preset approval conditions for going to the next rescue area. If the first professional rescue suitability is less than the second professional rescue suitability, the system determines that the rescuer does not meet the preset approval conditions for going to the next rescue area.

[0086] 207. Based on the information from the first and second areas, determine the adjustment plan for the rescue content of the next rescue area, and based on the information from the first and second areas, determine the additional plan for the rescue content of the next rescue area; based on the adjustment plan and the additional plan, control the communication tools equipped on the rescue personnel to perform the corresponding rescue reminder broadcast operations.

[0087] Optionally, the rescue-related content adjustment scheme can be illustrated by, for example: changing or adjusting the clothing currently being used by rescuers and specifying the specific clothing to be changed or adjusted, adjusting the usage of the protective equipment currently being used by rescuers and specifying the adjustment content, adjusting the protective equipment currently being used by rescuers to no longer be needed, etc.; furthermore, similarly, the content of the rescue route for the next rescue area and the content of the rescue precautions can be adjusted, etc., which are not limited in this embodiment of the invention.

[0088] Optionally, additional solutions may be added to the rescue content. For example, clothing / protective equipment that rescuers are not currently using but need to be added, along with the specific wearing and usage methods. Similarly, additional solutions may be provided for rescuers regarding rescue routes and precautions for the next rescue area. This embodiment of the invention does not limit these solutions.

[0089] Further optionally, the above-mentioned adjustment plan for the rescue personnel's rescue content in the next rescue area, based on the information from the first area and the information from the second area, may include: Based on the information from the first and second areas, determine the discrepancy information; based on the discrepancy information, determine the first target object that rescuers previously used but need to adjust its usage / attention methods and its corresponding adjustment plan, and based on the discrepancy information, determine the second target object that rescuers previously used / attention to but no longer need to use / attention to; based on the first target object and its corresponding adjustment plan, the second target object and its cancellation plan, generate an adjustment plan for the rescue content involved in the next rescue area.

[0090] Further optionally, the above-mentioned additional plan for rescue personnel to address the rescue content of the next rescue area based on the information from the first area and the information from the second area may include: Based on the information from the first and second areas, identify the differences; based on the differences, determine the third target object and its corresponding related content that rescuers need to add for the next rescue area compared to the current rescue area; based on the third target object and its corresponding related content, determine the new rescue plan for the next rescue area.

[0091] Optionally, the rescuers can be reminded in advance to update the rescue mode status in order to ensure their safety and improve rescue efficiency. This embodiment of the invention does not limit this.

[0092] 208. Determine the reasons why rescuers are prohibited from going to the next rescue area, and based on the reasons for prohibition, control the communication tools equipped on the rescuers to perform corresponding rescue reminder broadcast operations.

[0093] Optionally, the reasons for prohibiting travel can be provided, for example: the rescuer's identity / equipment does not meet the requirements for travel, the current rescue area needs the rescuer more, the rescue needs of the next rescue area are not compatible with the rescue services that the rescuer can provide, or the rescuer cannot guarantee safe rescue in the next rescue area. This embodiment of the invention does not limit these reasons.

[0094] In this embodiment of the invention, for other descriptions of steps 201-208, please refer to the other detailed descriptions of steps 101-104 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.

[0095] As can be seen, the embodiments of the present invention can determine whether rescuers meet the conditions for their rescue status and equipment to proceed to the current rescue area based on their rescue post level information, rescue equipment information, and the first area information of the current rescue area they are about to reach. If the conditions are met, a rescue prompt plan for the current rescue area is generated, and the communication tool equipped on the rescuer is controlled to broadcast the rescue prompt plan. This is beneficial to improving the comprehensiveness and rationality of intelligent early warning methods for rescuers applied to natural disasters, improving the accuracy, reliability, relevance, and relevance of the generated rescue prompt plan, thereby improving the relevance and relevance of the early warning prompts for rescuers, improving the accuracy and reliability of the early warning prompts for rescuers, and improving the efficiency, timeliness, and convenience of the early warning prompts for rescuers. In addition, it is beneficial to improve the rescue status and... The accuracy and reliability of rescue equipment verification improve the safety of rescue personnel. Furthermore, when it is detected that rescue personnel are about to travel to the next rescue area near the current rescue area, the system can generate and broadcast corresponding rescue announcements based on whether the personnel meet the approval criteria for traveling to the next rescue area or not. This improves the comprehensiveness and rationality of the rescue announcement generation and playback methods, as well as their diversity, flexibility, and relevance. This, in turn, enhances the accuracy and reliability of the rescue announcements for the next rescue area, and further improves the accuracy and reliability of the rescue verification process for approved travel to the next rescue area, ultimately improving the rationality and safety of rescue personnel traveling to the next rescue area.

[0096] Example 3 Please see Figure 3 , Figure 3 This is a schematic diagram of the structure of an intelligent early warning system for rescue personnel in natural disasters, as disclosed in an embodiment of the present invention. Figure 3The described system may include a server, which may be a local server or a cloud server; this embodiment of the invention does not limit the scope. Figure 3 As shown, this intelligent early warning system for rescue personnel in natural disasters may include: The information determination module 301 is used to determine the rescuer's job level information, rescue equipment information, and the first area information of the current rescue area corresponding to the rescuer collected by the monitoring equipment when the rescuer is carrying out rescue in a natural disaster area.

[0097] The first judgment module 302 is used to determine whether the rescuers meet the preset conditions for going to the current rescue area based on the rescue post identity level information and the first area information.

[0098] The second judgment module 303 is used to determine whether the rescuers meet the preset conditions for the rescue equipment to go to the current rescue area when the first judgment module 302 determines that the rescuers meet the conditions for the rescuers to go to the rescue area, based on the rescue equipment information and the first area information.

[0099] The prompt content generation module 304 is used to determine the rescue prompt plan for the current rescue area based on the rescue post identity level information, rescue equipment information and first area information when the second judgment module 303 determines that the rescue personnel meet the conditions for the rescue equipment to go there.

[0100] The rescue broadcast module 305 is used to control the communication tools equipped on rescue personnel to perform corresponding rescue reminder broadcast operations based on the rescue prompt scheme.

[0101] It is evident that implementation Figure 3 The described intelligent early warning system for natural disaster rescue personnel can determine whether rescue personnel meet the eligibility requirements for their rescue status and equipment based on their rescue post level, equipment, and the first area information of the upcoming rescue zone. If so, it generates a rescue alert plan for the rescue personnel and controls the communication tools equipped on the rescue personnel to broadcast the alert plan. This system improves the comprehensiveness and rationality of intelligent early warning methods for natural disaster rescue personnel, enhances the accuracy, reliability, relevance, and targeting of generated rescue alert plans, and consequently improves the relevance and targeting of early warning alerts. It also improves the efficiency, timeliness, and convenience of early warning alerts. Furthermore, it enhances the accuracy and reliability of rescue personnel's rescue status and equipment verification, thereby improving the safety of rescue personnel.

[0102] In an optional embodiment, the second determination module 303 determines whether rescue personnel meet the preset conditions for the availability of rescue equipment for the current rescue area based on the rescue equipment information and the first area information. The specific methods include: Based on the information from the first area, identify the first hazardous substance in the current rescue area that can directly harm rescuers, and based on the information from the first area, identify the second hazardous substance in the current rescue area that can indirectly harm rescuers. Based on the information on the first hazardous substance and the rescue equipment, determine whether the rescue personnel meet the preset conditions for facing the danger head-on; and based on the information on the second hazardous substance and the rescue equipment, determine whether the rescue personnel meet the preset conditions for mitigating the danger. When it is determined that the rescuers meet the conditions for facing danger head-on and the conditions for mitigating danger, it is determined that the rescuers meet the preset conditions for the rescue equipment to proceed to the current rescue area. When it is determined that the rescue personnel do not meet the conditions for directly facing danger and / or do not meet the conditions for mitigating danger, it is determined that the rescue personnel do not meet the preset conditions for the rescue equipment to proceed to the current rescue area.

[0103] It is evident that implementation Figure 4 The described system can determine the fulfillment of the conditions for facing danger based on information about the first hazardous substance and the rescue equipment, and the fulfillment of the conditions for mitigating danger based on information about the second hazardous substance and the rescue equipment, thereby determining the fulfillment of the conditions for the rescue equipment to proceed. This system is beneficial to improving the comprehensiveness and rationality of the method for determining the conditions for the rescue equipment to proceed, as well as the diversity and flexibility of the method. This, in turn, is beneficial to improving the accuracy and reliability of the determined conditions for the equipment to proceed, and thus is beneficial to improving the accuracy and reliability of subsequent rescue operations based on the rescue equipment.

[0104] In another optional embodiment, the second judgment module 303 determines whether the rescue personnel meet the preset conditions for facing danger based on the first hazardous substance information and the rescue equipment information. Specifically, this includes: Based on the information on rescue equipment, determine the protective performance information of the clothing worn by rescuers, and based on the information on the first hazardous substance and the protective performance information of the clothing, determine whether the clothing meets the preset condition of immediate damage upon contact with the hazard. When it is determined that the clothing does not meet the condition of immediate damage upon contact with a hazard, the sensory experience of the rescuers when the first hazard comes into contact with the clothing is determined based on the clothing's protective performance information and the information of the first hazard. Based on the sensory experience, it is determined whether the rescuers meet the preset conditions for maintaining normal work. When it is determined that the rescuers meet the conditions for maintaining normal work, the duration of protection provided by the equipped clothing in the current rescue scenario is determined based on the information on the first hazardous substance and the protective performance information of the clothing, and the predicted rescue duration required for the rescuers in the current rescue scenario is also determined; based on the predicted rescue duration and the duration of protection, it is determined whether the equipped clothing meets the preset conditions for continuous resistance to hazards. When it is determined that the clothing provided meets the conditions for continuous resistance to danger, it is confirmed that the rescuers meet the pre-set conditions for frontal exposure to danger. When it is determined that the clothing provided meets the condition of immediate damage upon contact with danger and / or the rescuer does not meet the condition of maintaining normal working conditions and / or the clothing provided does not meet the condition of continuously resisting danger, it is determined that the rescuer does not meet the pre-set condition of directly withstanding danger.

[0105] It is evident that implementation Figure 4 The described system can also determine the result of meeting the immediate damage condition upon contact with the hazard based on the information of the first hazardous substance and the protective performance information of the clothing; determine the result of meeting the condition of maintaining normal work based on the sensory experience of the rescuers when the first hazardous substance comes into contact with the clothing; and determine the result of meeting the condition of meeting the condition of continuously resisting the hazard based on the predicted rescue duration and the duration of protection. This leads to the result of meeting the condition of directly withstanding the hazard. This system is conducive to improving the comprehensiveness, rationality, and progressiveness of the method for determining the result of meeting the condition of directly withstanding the hazard. It is also conducive to improving the diversity and flexibility of the sub-determination methods used to determine the result of meeting the condition of directly withstanding the hazard, thereby improving the accuracy and reliability of the determined result of meeting the condition of directly withstanding the hazard.

[0106] In another optional embodiment, the second judgment module 303 determines whether the rescue personnel meet the preset hazard mitigation conditions based on the second hazardous substance information and the rescue equipment information. The specific methods include: Based on the information on the second hazardous substance, determine the type of the second hazardous substance and its degree of hazard. Based on the information on the rescue equipment, determine the existing protective equipment equipped by the rescue personnel and its functional information, including conventional functional information and special functional information. Based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, determine whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for rescue personnel. When it is determined that the existing protective equipment meets the conditions for handling shallow hazards, based on the hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, it is determined whether the existing protective equipment meets the preset conditions for eliminating deep environmental hazards for rescue personnel. When it is determined that the protective equipment meets the conditions for eliminating dangers in deep environments, it is confirmed that the rescue personnel meet the pre-set conditions for hazard mitigation. When it is determined that existing protective equipment does not meet the conditions for responding to shallow environmental hazards and / or existing protective equipment does not meet the conditions for eliminating deep environmental hazards, it is determined that the rescue personnel do not meet the pre-set hazard mitigation conditions.

[0107] It is evident that implementation Figure 4 The described system can also determine the fulfillment of shallow environment hazard response conditions based on the type of the second hazardous substance and the equipment function information of existing protective equipment, and determine the fulfillment of deep environment hazard elimination conditions based on the material hazard level of the second hazardous substance type and the equipment function information of existing protective equipment, thereby determining the fulfillment of hazard mitigation conditions. This is beneficial to improving the comprehensiveness, rationality, and progressiveness of the hazard mitigation condition determination method, and to improving the diversity and flexibility of the sub-determination methods used to determine the fulfillment of hazard mitigation conditions, thereby improving the accuracy and reliability of the determined hazard mitigation condition fulfillment results.

[0108] In another optional embodiment, the first determination module 302 determines whether the rescuer meets the preset conditions for being allowed to go to the current rescue area based on the rescue post identity level information and the first area information. The specific methods include: Based on the information from the first area, determine the primary and secondary rescue matters in the current rescue area, and based on the information from the first area, determine the first rescue requirement equipment capacity for the primary rescue matters and the second rescue requirement equipment capacity for the secondary rescue matters. Based on the rescue post's identity level information, determine the primary rescue functions and other secondary rescue skills that rescue personnel should possess; Based on the primary rescue function and the availability of personnel for the first rescue need, determine whether the rescue personnel meet the pre-set conditions for responding to the primary rescue matters; and based on other secondary rescue skills and the availability of personnel for the second rescue need, determine whether the rescue personnel meet the pre-set conditions for responding to the secondary rescue matters. When it is determined that the rescuers meet the conditions for responding to primary rescue matters and the conditions for responding to secondary rescue matters, the rescuers are confirmed to meet the preset conditions for being able to go to the current rescue area based on their rescue identity. When it is determined that the rescue personnel do not meet the conditions for responding to primary rescue matters and / or secondary rescue matters, it is determined that the rescue personnel do not meet the preset conditions for being able to go to the current rescue area.

[0109] It is evident that implementation Figure 4 The described system can also determine the fulfillment of the conditions for responding to primary rescue matters based on the primary rescue function and the capacity to meet the first rescue need, and determine the fulfillment of the conditions for responding to secondary rescue matters based on other secondary rescue skills and the capacity to meet the second rescue need, thereby determining the fulfillment of the conditions for rescuers to be able to go. This is conducive to improving the comprehensiveness, rationality, and progressiveness of the method for determining the conditions for rescuers to be able to go, and is conducive to improving the diversity and flexibility of the sub-determination methods used to determine the conditions for rescuers to be able to go, thereby improving the accuracy and reliability of the determined conditions for rescuers to be able to go.

[0110] In another optional embodiment, the prompt content generation module 304 determines the specific method of the rescue prompt plan for the current rescue area based on the rescue post identity level information, rescue equipment information, and first area information, including: Determine the real-time clothing and protective equipment usage plan for rescue personnel, and based on the information of the first area, determine the clothing and protective equipment usage plan for the current rescue area. The clothing and protective equipment usage plan includes the clothing to be worn and its specific wearing method, and the protective equipment to be used and its specific usage and operation method. Based on the information from the first area and the plan for the use of clothing and protective equipment, determine the rescue personnel's advance route and precautions for the current rescue area. Based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for adjusting the use of rescue clothing and equipment. When it is determined that the rescuers meet the conditions for adjusting their rescue clothing and equipment, the optimal adjustment method for the rescuers' rescue clothing and equipment is determined based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan; based on the optimal adjustment method for the rescue clothing and equipment, the rescue route and rescue precautions, a rescue prompt plan for the current rescue area is determined. When it is determined that the rescuers do not meet the conditions for adjusting the use of rescue clothing and equipment, a rescue prompt plan for the current rescue area is determined based on the rescue route and rescue precautions.

[0111] It is evident that implementation Figure 4The described system can also match corresponding rescue prompts and determination methods based on whether the rescuers meet the conditions for using rescue clothing and equipment or not. This helps to improve the comprehensiveness and rationality of the rescue prompt determination methods, as well as their diversity, flexibility, and pertinence. In turn, it helps to improve the accuracy and reliability of the determined rescue prompts and thus improves the accuracy and reliability of rescue prompts based on the rescue prompts.

[0112] In another optional embodiment, the information determination module 301 is further configured to determine, when it is detected that rescuers are about to go to the next rescue area located around the current rescue area, the second area information of the next rescue area collected by the monitoring device, wherein the next rescue area and the current rescue area satisfy a preset geographical environment difference relationship and / or rescue division area difference relationship.

[0113] like Figure 4 As shown, the system may also include: The third judgment module 306 is used to determine whether the rescue personnel meet the preset approval conditions for going to the next rescue area.

[0114] The prompt content generation module 304 is also used to determine the adjustment plan of the rescue content of the rescue personnel for the next rescue area based on the first area information and the second area information when the third judgment module 306 determines that the rescue personnel meet the approval conditions for going there, and to determine the new plan of the rescue content of the rescue personnel for the next rescue area based on the first area information and the second area information.

[0115] The rescue broadcast module 305 is also used to control the communication tools equipped on rescue personnel to perform corresponding rescue reminder broadcast operations based on the adjustment plan and the addition plan of the rescue-related content.

[0116] The prompt content generation module 304 is also used to determine the reason information for prohibiting rescuers from going to the next rescue area when the third judgment module 306 determines that the rescuers do not meet the conditions for approval to go.

[0117] The rescue broadcast module 305 is also used to control the communication tools equipped on rescue personnel to perform corresponding rescue reminder broadcast operations based on the reason information for prohibiting travel.

[0118] It is evident that implementation Figure 4The described system can also generate and broadcast corresponding rescue announcements based on whether the rescuers meet the approval criteria for traveling to the next rescue area or not when it detects that rescuers are about to travel to the next rescue area. This improves the comprehensiveness and rationality of the rescue announcement generation and playback methods, as well as their diversity, flexibility, and relevance. Consequently, it enhances the accuracy and reliability of the rescue announcements for the next rescue area, and further improves the accuracy and reliability of the rescue announcements for that area. In addition, it improves the accuracy and reliability of the rescue verification for approved travel to the next rescue area, thus enhancing the rationality and safety of rescuers traveling to the next rescue area.

[0119] Example 4 Please see Figure 5 , Figure 5 This is a schematic diagram of the structure of another intelligent early warning system for rescue personnel applied to natural disasters, as disclosed in an embodiment of the present invention. Figure 5 The described system may include a server, which may be a local server or a cloud server; this embodiment of the invention does not limit the scope. Figure 5 As shown, the system may include: Memory 401 storing executable program code; Processor 402 coupled to memory 401; Furthermore, it may also include an input interface 403 coupled to the processor 402 and an output interface 404; The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the intelligent early warning method for rescue personnel in natural disasters described in Embodiment 1 or Embodiment 2.

[0120] Example 5 This invention discloses a computer storage medium that stores a computer program for electronic data exchange, wherein the computer program causes a computer to execute the steps in the intelligent early warning method for rescue personnel in natural disasters described in Embodiment 1 or Embodiment 2.

[0121] Example 6 This invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the intelligent early warning method for rescue personnel in natural disasters described in Embodiment 1 or Embodiment 2.

[0122] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0123] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.

[0124] Finally, it should be noted that the intelligent early warning method and system for rescue personnel in natural disasters disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An intelligent early warning method for rescue personnel applied to natural disasters, characterized in that, The method includes: When rescuers are conducting rescue operations in a natural disaster area, the rescuers' job level information, rescue equipment information, and the first area information of the current rescue area corresponding to the rescuers, collected by the monitoring equipment, are determined. Based on the rescue post identity level information and the first area information, it is determined whether the rescue personnel meet the preset conditions for being able to go to the current rescue area. When it is determined that the rescue personnel meet the conditions for being able to go to the rescue area, the rescue equipment information and the first area information are used to determine whether the rescue personnel meet the preset conditions for being able to go to the current rescue area. When it is determined that the rescue personnel meet the conditions for the rescue equipment to proceed, a rescue prompt plan for the current rescue area is determined based on the rescue post identity level information, the rescue equipment information, and the first area information; based on the rescue prompt plan, the communication tool equipped on the rescue personnel is controlled to perform the corresponding rescue reminder broadcast operation.

2. The intelligent early warning method for rescue personnel in natural disasters according to claim 1, characterized in that, The step of determining whether the rescue personnel meet the preset conditions for the availability of rescue equipment for the current rescue area based on the rescue equipment information and the first area information includes: Based on the first area information, information on a first hazardous substance in the current rescue area that can directly harm the rescuers is determined, and information on a second hazardous substance in the current rescue area that can indirectly harm the rescuers is determined based on the first area information. Based on the first hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for facing danger head-on; and based on the second hazardous substance information and the rescue equipment information, determine whether the rescue personnel meet the preset conditions for mitigating danger. When it is determined that the rescuer meets the conditions for facing danger and the conditions for mitigating danger, it is determined that the rescuer meets the preset conditions for the rescue equipment to reach the current rescue area. When it is determined that the rescue personnel do not meet the conditions for facing danger head-on and / or the conditions for mitigating danger, it is determined that the rescue personnel do not meet the preset conditions for the rescue equipment to proceed to the current rescue area.

3. The intelligent early warning method for rescue personnel in natural disasters according to claim 2, characterized in that, The step of determining whether the rescue personnel meet the preset conditions for facing danger based on the first hazardous substance information and the rescue equipment information includes: Based on the rescue equipment information, determine the clothing protection performance information of the clothing equipped by the rescue personnel, and based on the first hazardous substance information and the clothing protection performance information, determine whether the equipped clothing meets the preset condition of immediate damage upon contact with the hazard. When it is determined that the equipped clothing does not meet the condition of immediate damage upon contact with danger, the sensory experience of the rescuer when the first hazardous substance comes into contact with the equipped clothing is determined based on the protective performance information of the clothing and the information of the first hazardous substance. Based on the sensory experience, it is determined whether the rescuer meets the preset conditions for maintaining normal work. When it is determined that the rescue personnel meet the conditions for maintaining normal work, the protective duration of the equipped clothing in the current rescue scenario is determined based on the first hazardous substance information and the clothing protective performance information, and the predicted rescue duration of the rescue personnel in the current rescue scenario is determined; based on the predicted rescue duration and the protective duration, it is determined whether the equipped clothing meets the preset conditions for continuous resistance to danger. When it is determined that the clothing provided meets the conditions for continuous resistance to danger, it is determined that the rescuer meets the preset conditions for frontal exposure to danger. When it is determined that the clothing provided meets the condition of immediate damage upon contact with danger and / or the rescuer does not meet the condition of maintaining normal work and / or the clothing provided does not meet the condition of continuous resistance to danger, it is determined that the rescuer does not meet the preset condition of frontal exposure to danger.

4. The intelligent early warning method for rescue personnel in natural disasters according to claim 2, characterized in that, The step of determining whether the rescue personnel meet the preset hazard mitigation conditions based on the second hazardous substance information and the rescue equipment information includes: Based on the second hazardous substance information, determine the type of the second hazardous substance and its degree of hazard; and based on the rescue equipment information, determine the existing protective equipment equipped by the rescue personnel and its functional information, wherein the equipment functional information includes conventional functional information and special functional information. Based on the type of the second hazardous substance and the equipment function information of the existing protective equipment, determine whether the existing protective equipment meets the preset conditions for responding to shallow environmental hazards for the rescue personnel. When it is determined that the existing protective equipment meets the shallow hazard handling conditions, based on the material hazard level of the second hazardous substance type and the equipment function information of the existing protective equipment, it is determined whether the existing protective equipment meets the preset deep environment hazard elimination conditions for the rescue personnel. When it is determined that the existing protective equipment meets the conditions for eliminating the danger in the deep environment, it is determined that the rescue personnel meet the preset conditions for mitigating the danger. When it is determined that the existing protective equipment does not meet the conditions for responding to shallow environmental hazards and / or does not meet the conditions for eliminating deep environmental hazards, it is determined that the rescue personnel do not meet the preset hazard mitigation conditions.

5. The intelligent early warning method for rescue personnel applied to natural disasters according to claim 1, characterized in that, The step of determining whether the rescue personnel meet the preset conditions for being allowed to travel to the current rescue area based on the rescue post identity level information and the first area information includes: Based on the first area information, determine the primary and secondary rescue matters in the current rescue area, and based on the first area information, determine the first rescue requirement equipment capacity for the primary rescue matter and the second rescue requirement equipment capacity for the secondary rescue matter; Based on the rescue post identity level information, determine the primary rescue function and other secondary rescue skills of the rescue personnel; Based on the primary rescue function and the first rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling primary rescue matters; and based on the other secondary rescue skills and the second rescue requirement equipment capacity, determine whether the rescue personnel meet the preset conditions for handling secondary rescue matters. When it is determined that the rescuer meets the primary rescue response conditions and the secondary rescue response conditions, the rescuer is determined to meet the preset conditions for being able to go to the current rescue area based on their rescue identity. When it is determined that the rescue personnel do not meet the conditions for responding to the primary rescue matter and / or the conditions for responding to the secondary rescue matter, it is determined that the rescue personnel do not meet the preset conditions for being eligible to go to the current rescue area.

6. The intelligent early warning method for rescue personnel in natural disasters according to any one of claims 1-5, characterized in that, The step of determining the rescue prompt plan for the current rescue area based on the rescue post identity level information, the rescue equipment information, and the first area information includes: The real-time clothing and protective equipment usage plan for the rescue personnel is determined, and based on the first area information, the clothing and protective equipment usage plan for the current rescue area is determined. The clothing and protective equipment usage plan includes the clothing to be worn and its specific wearing method, and the protective equipment to be used and its specific usage and operation method. Based on the information of the first area and the proposed plan for the use of clothing and protective equipment, the rescue personnel will determine the rescue route and precautions for the current rescue area. Based on the real-time clothing and protective equipment usage plan, the required clothing and protective equipment usage plan, and the rescue equipment information, determine whether the rescue personnel meet the preset adjustment conditions for the use of rescue clothing and equipment; When it is determined that the rescuers meet the conditions for adjusting the use of rescue clothing and equipment, the optimal adjustment method for the rescuers' rescue clothing and equipment is determined based on the real-time clothing and protective equipment usage plan and the required clothing and protective equipment usage plan; and the rescue prompt plan for the rescuers in the current rescue area is determined based on the optimal adjustment method for the rescue clothing and equipment, the rescue route, and rescue precautions. When it is determined that the rescue personnel do not meet the conditions for using and adjusting the rescue clothing and equipment, a rescue prompt plan for the current rescue area is determined based on the rescue route and rescue precautions.

7. The intelligent early warning method for rescue personnel in natural disasters according to claim 6, characterized in that, The method further includes: When it is detected that the rescue personnel are about to go to the next rescue area located around the current rescue area, the second area information of the next rescue area collected by the monitoring equipment is determined, and the next rescue area and the current rescue area meet the preset geographical environment difference relationship and / or rescue division area difference relationship; Determine whether the rescue personnel meet the preset approved conditions for going to the next rescue area; When it is determined that the rescue personnel meet the approved conditions for going to the next rescue area, an adjustment plan for the rescue content of the rescue personnel in the next rescue area is determined based on the first area information and the second area information, and a new plan for the rescue content of the rescue personnel in the next rescue area is determined based on the first area information and the second area information; based on the adjustment plan for the rescue content and the new plan for the rescue content, the communication tools equipped on the rescue personnel are controlled to perform corresponding rescue reminder broadcast operations; When it is determined that the rescue personnel do not meet the approved conditions for going, the reason information for prohibiting the rescue personnel from going to the next rescue area is determined, and based on the reason information for prohibition, the communication tool equipped on the rescue personnel is controlled to perform the corresponding rescue reminder broadcast operation.

8. An intelligent early warning system for rescue personnel applied to natural disasters, characterized in that, The system includes: The information determination module is used to determine the rescuer's job level information, rescue equipment information, and the first area information of the current rescue area corresponding to the rescuer, which is collected by the monitoring equipment, when the rescuer is carrying out rescue in a natural disaster area. The first judgment module is used to determine whether the rescue personnel meet the preset conditions for going to the current rescue area based on the rescue post identity level information and the first area information. The second judgment module is used to determine whether the rescuer meets the preset conditions for the rescue equipment to go to the current rescue area based on the rescue equipment information and the first area information when the first judgment module determines that the rescuer meets the conditions for the rescuer to go to the rescue area. The prompt content generation module is used to determine the rescue prompt plan for the current rescue area based on the rescue post identity level information, the rescue equipment information, and the first area information when the second judgment module determines that the rescue personnel meet the conditions for the rescue equipment to go there. The rescue broadcast module is used to control the communication tools equipped on the rescue personnel to perform corresponding rescue reminder broadcast operations based on the rescue prompt scheme.

9. An intelligent early warning system for rescue personnel applied to natural disasters, characterized in that, The system includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the intelligent early warning method for rescue personnel applied to natural disasters as described in any one of claims 1-7.

10. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the intelligent early warning method for rescue personnel applied to natural disasters as described in any one of claims 1-7.