Emergency Escape Drill Route Adjustment Method, Device, Electronic Device, and Storage Medium
By obtaining the real road network data and personnel location information of the park, and generating and optimizing the escape path, the problem that the escape path cannot cope with sudden state adjustments is solved, and the escape efficiency and safety are improved.
Patent Information
- Application Number
- CN202111581072.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-22
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2041-12-22
AI Technical Summary
In the prior art, the escape path cannot cope with the adjustment of the emergencies, resulting in inefficient escape efficiency for personnel.
By obtaining the real road network data and personnel location information in the park, generating path information, and adjusting the escape path based on the load information, optimizing the escape path to achieve real-time adjustment.
Real-time optimization of escape paths in emergencies is achieved, improving the efficiency and safety of personnel escape, and avoiding path congestion and blockage.
Smart Images

Figure CN114548480B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of work safety, and particularly to an emergency escape drill path adjustment method, device, electronic device, and storage medium. Background Art
[0002] Nowadays, almost all process industries use chemical raw materials in their daily production operations for industrial manufacturing. These chemical raw materials need to be stored in a stable and enclosed space. Current tank storage is one of the important ways to store chemical raw materials. Therefore, it is of great significance to take the leakage or explosion of storage tanks as the research object.
[0003] At present, "improving the public safety system, perfecting the work safety responsibility system, resolutely curbing major safety accidents, and enhancing the ability to prevent and mitigate disasters" is the national overall safety concept. The state has issued a notice on the hazardous chemical safety governance plan, encouraging the use of information technology and intelligent means to establish an integrated management platform for safety, environmental protection, and emergency rescue in industrial parks and functional areas involving major risks of hazardous chemicals; the national safety plan also mentions: improving the early warning and monitoring capabilities of major hazard source monitoring, hidden danger investigation, risk control, and emergency response, continuously improving the dual prevention mechanism of risk grading control and hidden danger investigation and treatment, and promoting the shift of the work safety threshold forward; many safety risk investigation and treatment guidelines also point to continuously improving the work safety level of industrial parks.
[0004] In recent years, work safety problems involving the explosion and leakage of hazardous chemicals have occurred frequently. The management of industrial parks faces severe challenges, and the regulatory authorities also face challenges, which involve enterprises, park management committees, and regulatory units. How to effectively investigate the safety risks of industrial parks, standardize the safety management of industrial parks, improve the safety level of industrial parks, how to enhance the safety emergency guarantee ability of industrial parks, and prevent the occurrence of major and extremely serious safety accidents of hazardous chemicals are urgent tasks in the construction and production and operation processes of industrial parks.
[0005] At present, although there is an emergency drill plan for work safety early warning and emergency technology in industrial parks, personnel can only escape along the preset path, and when a sudden situation occurs, the escape path cannot be adjusted in real time.
[0006] In view of the problem in the related technology that the escape path cannot be adjusted to cope with sudden situations, no effective solution has been proposed yet. Summary of the Invention
[0007] In this embodiment, an emergency escape drill path adjustment method, device, electronic device, and storage medium are provided to solve the problem in the related technology that the escape path cannot be adjusted to cope with sudden situations.
[0008] In a first aspect, in the present embodiment, a method for adjusting an emergency escape drill path is provided, including:
[0009] Obtain the real road network data and personnel location information in the park;
[0010] Generate path information according to the real road network data and personnel location information, where the path information includes multiple escape paths;
[0011] Obtain the load information of each escape path according to the path information and personnel location information;
[0012] Adjust the path information according to the load information to generate path optimization information;
[0013] Send the path optimization information to the corresponding terminal device so that personnel can evacuate according to the corresponding escape path.
[0014] In some embodiments, the method includes:
[0015] Obtain obstacle information;
[0016] Adjust the path information according to the obstacle information.
[0017] In some embodiments, the adjusting the path information according to the obstacle information includes:
[0018] Collect the environmental parameters in the park;
[0019] Generate the obstacle information according to the environmental parameters;
[0020] Adjust the path information according to the obstacle information.
[0021] In some embodiments, the method includes:
[0022] Obtain the trapped information of the trapped personnel;
[0023] Locate the position of the trapped personnel according to the trapped information;
[0024] Generate a rescue path according to the position of the trapped personnel.
[0025] In some embodiments, the obtaining the load information of each escape path according to the path information and personnel location information includes:
[0026] Obtain the load threshold of each escape path;
[0027] Obtain the load information of each escape path according to the personnel location information and the load threshold of each escape path.
[0028] In some of these embodiments, adjusting the path information according to the load information and generating path optimization information includes:
[0029] Detecting whether the number of people in the escape path exceeds the load threshold of the escape path;
[0030] If the number of people in the escape path exceeds the load threshold, adjust the escape path that exceeds the load threshold according to the real road network data.
[0031] In some of these embodiments, the method further includes:
[0032] Detecting whether the current position of a person is within the escape path;
[0033] If the current position of a person is outside the escape path, generate an out-of-bounds alarm prompt.
[0034] In a second aspect, in this embodiment, an emergency escape drill path adjustment device is provided, including:
[0035] An information acquisition module, configured to acquire real road network data and personnel position information in the park;
[0036] A path generation module, configured to generate path information according to the real road network data and personnel position information, where the path information includes multiple escape paths;
[0037] A load confirmation module, configured to obtain the load information of each escape path according to the path information and personnel position information;
[0038] A path optimization module, configured to adjust the path information according to the load information and generate path optimization information;
[0039] An information sending module, configured to send the path optimization information to the corresponding terminal device so that personnel can evacuate according to the corresponding escape path.
[0040] In a third aspect, in this embodiment, an electronic device is provided, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the computer program, the emergency escape drill path adjustment method described in the first aspect above is implemented.
[0041] In a fourth aspect, in this embodiment, a storage medium is provided, on which a computer program is stored. When the program is executed by a processor, the emergency escape drill path adjustment method described in the first aspect above is implemented.
[0042] Compared with the related technologies, the emergency escape drill path adjustment method provided in this embodiment obtains the load information of each escape path by acquiring path information and personnel location information, optimizes the escape path, solves the problem that the escape path cannot be adjusted in response to sudden states, and enables people to escape better through the escape path.
[0043] Details of one or more embodiments of the present application are set forth in the following drawings and description to make other features, objects, and advantages of the present application more concise and understandable. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments and descriptions thereof of the present application are used to explain the present application and do not constitute an improper limitation of the present application. In the drawings:
[0045] Figure 1 is a hardware structure block diagram of the terminal of the emergency escape drill path adjustment method in this embodiment;
[0046] Figure 2 is a flowchart of the emergency escape drill path adjustment method in this embodiment;
[0047] Figure 3 is a structure block diagram of the emergency escape drill path adjustment device in this embodiment;
[0048] Figure 4 is a preferred structure block diagram of the emergency escape drill path adjustment device in this embodiment. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0049] To understand the purpose, technical solution, and advantages of the present application more clearly, the present application is described and illustrated below with reference to the drawings and embodiments.
[0050] Unless otherwise defined, technical terms or scientific terms involved in this application shall have the ordinary meanings understood by those with ordinary skills in the technical field to which this application belongs. In this application, words such as "a", "an", "one kind", "the", "these", etc. do not indicate a limitation in quantity, and they can be singular or plural. Terms such as "comprising", "including", "having" and any variations thereof involved in this application are intended to cover non-exclusive inclusion; for example, a process, method, system, product or device comprising a series of steps or modules (units) is not limited to the listed steps or modules (units), but may include unlisted steps or modules (units), or may include other steps or modules (units) inherent in these processes, methods, products or devices. Words such as "connected", "coupled", etc. involved in this application are not limited to physical or mechanical connections, but may include electrical connections, whether directly or indirectly. The "plurality" involved in this application means two or more. "And / or" describes the association relationship of associated objects and indicates that three relationships can exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, and B exists alone. Usually, the character " / " indicates that the objects associated before and after are in an "or" relationship. Terms such as "first", "second", "third", etc. involved in this application only distinguish similar objects and do not represent a specific order for the objects.
[0051] The method embodiment provided in this embodiment can be executed on a terminal, a computer or a similar computing device. For example, when running on a terminal, Figure 1 is the hardware structure block diagram of the terminal of the emergency escape drill path adjustment method in this embodiment. As Figure 1 shown, the terminal may include one or more ( Figure 1 only one is shown in the figure) processors 102 and a memory 104 for storing data. Among them, the processor 102 may include, but is not limited to, a processing device such as a microprocessor MCU or a programmable logic device FPGA. The above terminal may also include a transmission device 106 for communication functions and an input / output device 108. Those of ordinary skill in the art can understand that Figure 1 the structure shown is only schematic and does not limit the structure of the above terminal. For example, the terminal may also include more or fewer components than Figure 1 shown in the figure, or have a different configuration from Figure 1 shown.
[0052] The memory 104 can be used to store computer programs, such as software programs and modules of application software, such as the computer program corresponding to the emergency escape drill path adjustment method in this embodiment. The processor 102 executes various functional applications and data processing by running the computer program stored in the memory 104, that is, the above method is implemented. The memory 104 may include a high-speed random access memory, and may also include a non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memories. In some instances, the memory 104 may further include a memory remotely provided with respect to the processor 102, and these remote memories can be connected to the terminal through a network. Examples of the above network include but are not limited to the Internet, an enterprise intranet, a local area network, a mobile communication network, and combinations thereof.
[0053] The transmission device 106 is used to receive or send data via a network. The above network includes a wireless network provided by the communication provider of the terminal. In one instance, the transmission device 106 includes a network adapter (abbreviated as NIC), which can be connected to other network devices through a base station and thus can communicate with the Internet. In one instance, the transmission device 106 can be a radio frequency (RF) module, which is used to communicate with the Internet wirelessly.
[0054] In this embodiment, an emergency escape drill path adjustment method is provided. Figure 2 is a flowchart of the emergency escape drill path adjustment method of this embodiment, as Figure 2 shown, the process includes the following steps:
[0055] Step S201, obtain the real road network data and personnel location information in the park.
[0056] Specifically, to obtain the real road network data in the park, the staff wears a positioning device, and the personnel location information is obtained by receiving the positioning signal of the positioning device.
[0057] In one embodiment, the real road network data includes landmark parameters. There are landmarks capable of emitting signals set on the roads in the park. The positioning device determines the current location of the personnel by receiving the signals of the landmarks. More specifically, the landmarks can emit Bluetooth signals and each landmark has a unique identifier. The positioning device receives the Bluetooth signals of the landmarks, identifies the strength of the Bluetooth signals and the unique identifier of the landmark, and takes the landmark with the strongest signal strength as the current location of the personnel to improve the positioning accuracy.
[0058] Step S202, generate path information according to the real road network data and personnel location information, where the path information includes multiple escape paths.
[0059] Specifically, according to the real road network data and personnel location information, escape routes from the current locations of each person to the emergency assembly points are generated, and each person corresponds to at least one escape route.
[0060] Step S203: Obtain the load information of each escape route according to the route information and personnel location information.
[0061] Specifically, obtain the load threshold of each escape route; according to the personnel location information and the load threshold of each escape route, obtain the load information of each escape route.
[0062] Wherein, the load threshold is the maximum number of people that can be accommodated in each sub-route of the escape route and the maximum number of people that can be accommodated in the emergency assembly point corresponding to the end point of the escape route.
[0063] More specifically, obtain the load threshold of each escape route, and judge whether the number of people on each escape route exceeds the load threshold according to the personnel location information. If the number of people in the escape route exceeds the load threshold, mark the escape route as overloaded and indicate the number of overloaded people; if the number of people in the escape route does not exceed the load threshold, mark the escape route as having normal load. Take the result as the load information of each escape route.
[0064] Step S204: Adjust the route information according to the load information to generate route optimization information.
[0065] Specifically, according to the load information of each escape route, divert the people in the overloaded escape routes to the escape routes with normal load, and adjust the previously generated route information. More specifically, detect whether the number of people in the escape route exceeds the load threshold of the escape route; if the number of people in the escape route exceeds the load threshold, adjust the escape route exceeding the load threshold according to the real road network data. Screen out the personnel location information in the overloaded escape route and the routes with normal load in the real road network data, and regenerate the route optimization information so that the people in the overloaded escape routes can escape according to the optimized escape routes. In one embodiment, the number of people at the emergency assembly point is monitored in real time. If it exceeds the specified number, re-plan this route, set the target end point to an adjacent emergency assembly point, and assist the command personnel to divert the evacuated people to other emergency assembly points. And monitor the number of people in a certain section of the road network in real time through an image sensor, compare it with the maximum number of people that can be accommodated at the emergency assembly point, and when the number of people exceeds the expected number, set the target end point to an adjacent emergency assembly point, and assist the command personnel to divert the evacuated people to other emergency assembly points.
[0066] Step S205: Send the path optimization information to the corresponding terminal device so that personnel can evacuate along the corresponding escape path.
[0067] Specifically, send the path optimization information to the terminal devices of the personnel on the overloaded escape path so that the personnel on the overloaded escape path can be diverted along the corresponding escape path and escape to the corresponding emergency assembly point, preventing congestion and blockage in the escape path and reducing the escape efficiency.
[0068] The method further includes: detecting whether the current position of the personnel is within the escape path; if the current position of the personnel is outside the escape path, generating an out-of-bounds alarm prompt.
[0069] Specifically, according to the personnel position information, detect whether the current position of the personnel is within the escape path; if the current position of the personnel is outside the escape path, generate an out-of-bounds alarm prompt, prompting the personnel that the escape path is incorrect and asking them to correct it as soon as possible. More specifically, according to the current position of the personnel, generate a new escape path again and send it to the terminal device of this personnel, allowing them to escape along the new escape path.
[0070] The method includes: obtaining obstacle information; adjusting the path information according to the obstacle information.
[0071] Specifically, obtain obstacle information, detect whether the obstacles in the obstacle information block the escape path, and if the obstacles block the escape path, adjust the blocked escape path.
[0072] Adjusting the path information according to the obstacle information to generate path optimization information includes: collecting environmental parameters in the park; generating the obstacle information according to the environmental parameters; adjusting the path information according to the obstacle information.
[0073] Specifically, various types of sensors are deployed in the park, such as environmental sensors such as image sensors, gas sensors, temperature sensors, and humidity sensors. Collect various environmental parameters through the sensors, screen out obstacles on the escape path according to the environmental parameters, and generate the obstacle information. Adjust the path information according to the obstacle information. More specifically, the obstacle information can also be updated in real time according to the environmental parameters. In one embodiment, during the escape process, obtain the environmental parameters in the park in real time, update the obstacle information in real time according to the environmental parameters, detect in real time whether the obstacles in the obstacle information block the escape path, and if the obstacles block the escape path, adjust the blocked escape path in real time to generate a new escape path, and send the new escape path to the terminal devices of the personnel in the blocked escape path.
[0074] In another embodiment, the image sensor collects image information on each escape route and displays the image information in real time through a display device.
[0075] The method includes: obtaining the trapped information of the trapped person; positioning the location of the trapped person according to the trapped information; and generating a rescue path according to the location of the trapped person.
[0076] Specifically, according to the personnel position information, it is detected whether the stationary time of the person at a non-emergency assembly point location exceeds a preset time threshold. If the stationary time of the person exceeds the preset time threshold, it is marked that the person is trapped, and trapped information is generated. The trapped information includes the trapped location and trapped time of the person. According to the trapped information, the location of the trapped person is positioned and a rescue path is generated. In one embodiment, the trapped person can also actively request rescue by transmitting trapped information through a terminal device.
[0077] The method further includes: confirming the escape status of the person according to the personnel position information.
[0078] Specifically, according to the personnel position information, the personnel in each emergency assembly point and the time of arrival at the emergency assembly point are detected to confirm the escape status of the person, and an escape report is generated according to the escape status.
[0079] Through the above steps, path information and personnel position information are obtained, the load information of each escape path is obtained, and the escape path is optimized, solving the problem that the escape path cannot be adjusted in response to sudden states, and realizing that people can escape better through the escape path.
[0080] It should be noted that the steps shown in the above process or the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions, and although the logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in a different order than here.
[0081] In this embodiment, an emergency escape drill path adjustment device is further provided. This device is used to implement the above embodiments and preferred implementation manners, and those that have been described will not be repeated. The following terms such as "module", "unit", "sub-unit", etc. can be a combination of software and / or hardware that can achieve a predetermined function. Although the devices described in the following embodiments are preferably implemented in software, implementation in hardware, or a combination of software and hardware is also possible and contemplated.
[0082] Figure 3 is the structural block diagram of the emergency escape drill path adjustment device of this embodiment, as Figure 3As shown in the figure, the device includes: an information acquisition module 310, a path generation module 320, a load confirmation module 330, a path optimization module 340, and an information sending module 350.
[0083] The information acquisition module 310 is used to acquire the real road network data and personnel location information in the park.
[0084] The path generation module 320 is used to generate path information according to the real road network data and personnel location information.
[0085] The load confirmation module 330 is used to obtain the load information of each escape path according to the path information and personnel location information.
[0086] The path optimization module 340 is used to adjust the path information according to the load information and generate path optimization information.
[0087] The information sending module 350 is used to send the path optimization information to the corresponding terminal device so that personnel can evacuate according to the corresponding escape path.
[0088] The path optimization module 340 is further used to obtain the load threshold of each escape path; according to the personnel location information and the load threshold of each escape path, obtain the load information of each escape path.
[0089] The path optimization module 340 is further used to detect whether the number of people in the escape path exceeds the load threshold of the escape path; if the number of people in the escape path exceeds the load threshold, adjust the escape path that exceeds the load threshold according to the real road network data.
[0090] Figure 4 is the preferred structural block diagram of the emergency escape drill path adjustment device in this embodiment. As Figure 4 shown, the device includes Figure 3 all the modules shown above. In addition, it further includes: a rescue processing module 410, an alarm prompt module 420, and an obstacle update module 430.
[0091] The rescue processing module 410 is used to obtain the trapped information of the trapped personnel; according to the trapped information, locate the location of the trapped personnel; according to the location of the trapped personnel, generate a rescue path.
[0092] The alarm prompt module 420 is used to detect whether the current location of the personnel is within the escape path; if the current location of the personnel is outside the escape path, generate an out-of-bounds alarm prompt.
[0093] The obstacle update module 430 is used to obtain obstacle information; according to the obstacle information, adjust the path information.
[0094] The obstacle update module 430 is further configured to collect environmental parameters in the park; generate the obstacle information according to the environmental parameters; and adjust the path information according to the obstacle information.
[0095] It should be noted that each of the above modules can be a functional module or a program module, and can be implemented either by software or by hardware. For modules implemented by hardware, each of the above modules can be located in the same processor; or each of the above modules can also be located in different processors in any combined form.
[0096] In this embodiment, an electronic device is further provided, including a memory and a processor. A computer program is stored in the memory, and the processor is configured to run the computer program to execute the steps in any one of the above method embodiments.
[0097] Optionally, the above electronic device may further include a transmission device and an input / output device. Among them, the transmission device is connected to the above processor, and the input / output device is connected to the above processor.
[0098] Optionally, in this embodiment, the above processor may be configured to execute the following steps through a computer program:
[0099] Obtain the real road network data and personnel location information in the park;
[0100] Generate path information according to the real road network data and personnel location information, where the path information includes multiple escape paths;
[0101] Obtain the load information of each escape path according to the path information and personnel location information;
[0102] Adjust the path information according to the load information to generate path optimization information;
[0103] Send the path optimization information to the corresponding terminal device so that personnel can evacuate according to the corresponding escape path.
[0104] It should be noted that specific examples in this embodiment can refer to the examples described in the above embodiments and optional implementation manners, and will not be repeated in this embodiment.
[0105] In addition, in combination with the emergency escape drill path adjustment method provided in the above embodiments, a storage medium can also be provided to implement it in this embodiment. A computer program is stored on the storage medium; when the computer program is executed by a processor, it implements any one of the emergency escape drill path adjustment methods in the above embodiments.
[0106] It should be understood that the specific embodiments described herein are only used to explain this application and not to limit it. All other embodiments obtained by those of ordinary skill in the art without creative efforts according to the embodiments provided in this application fall within the protection scope of this application.
[0107] Obviously, the accompanying drawings are only some examples or embodiments of this application. For those of ordinary skill in the art, this application can also be applied to other similar situations based on these drawings without creative efforts. Additionally, it can be understood that although the work done during the development process here may be complex and time-consuming, for those of ordinary skill in the art, certain design, manufacturing, or production changes based on the technical content disclosed in this application are only routine technical means and should not be regarded as insufficient disclosure of this application.
[0108] The term "embodiment" in this application means that the specific features, structures, or characteristics described in connection with the embodiments may be included in at least one embodiment of this application. The phrase appears at various positions in the specification and does not necessarily mean the same embodiment, nor does it mean being independent or alternative to other embodiments and mutually exclusive. Those of ordinary skill in the art can clearly or implicitly understand that the embodiments described in this application can be combined with other embodiments without conflict.
[0109] The above-described embodiments only represent several implementation manners of this application. Their descriptions are relatively specific and detailed, but they should not be construed as limitations on the scope of patent protection. It should be noted that for those of ordinary skill in the art, without departing from the concept of this application, several modifications and improvements can still be made, and these all belong to the protection scope of this application. Therefore, the protection scope of this application shall be subject to the appended claims.
Claims
1. A method for adjusting an emergency escape drill path, characterized in that: include: Acquiring real road network data and personnel location information within the park; wherein the real road network data includes landmark parameters; to obtain the real road network data within the park, personnel wear positioning devices, which receive signals from landmarks to determine the personnel's current location and obtain the personnel's location information; Generating path information based on the real road network data and personnel location information, wherein the path information includes multiple escape paths; generating the path information based on the real road network data and personnel location information includes: generating an escape path corresponding to each person's current location to the emergency assembly point based on the real road network data and personnel location information, wherein each person corresponds to at least one escape path; Obtain the load information of each escape path based on the path information and personnel location information; Adjust the path information according to the load information to generate path optimization information; The path optimization information is sent to the corresponding terminal device so that personnel can evacuate according to the corresponding escape path.
2. The method for adjusting the emergency escape drill path according to claim 1, characterized in that: The method comprises: Obtain obstacle information; The path information is adjusted according to the obstacle information.
3. The method for adjusting the emergency escape drill path according to claim 2, characterized in that: The adjusting the path information according to the obstacle information includes: Collect environmental parameters within the park; generating the obstacle information according to the environmental parameters; The path information is adjusted according to the obstacle information.
4. The method for adjusting the emergency escape drill path according to claim 1, wherein: The method comprises: Obtaining trapped information of trapped persons; Locating the location of the trapped person according to the trapped information; Generate a rescue route based on the location of the trapped people.
5. The method for adjusting the emergency escape drill path according to claim 1, wherein: The process of obtaining the load information of each escape path according to the path information and the personnel position information includes: Obtain the load threshold of each escape path; The load information of each escape path is obtained according to the personnel position information and the load threshold of each escape path.
6. The method for adjusting the emergency escape drill path according to claim 5, characterized in that: Adjusting the path information according to the load information to generate path optimization information includes: Detecting whether the number of people in the escape route exceeds the load threshold of the escape route; If the number of people in the escape path exceeds a load threshold, the escape path exceeding the load threshold is adjusted according to the real road network data.
7. The method for adjusting the emergency escape drill path according to claim 1, characterized in that: The method further comprises: Check whether the person's current location is within the escape route; If the person's current location is outside the escape route, an out-of-bounds alarm will be generated.
8. An emergency escape drill path adjustment device, characterized in that: include: An information acquisition module is used to obtain real road network data and personnel location information within the park; wherein the real road network data includes landmark parameters; to obtain the real road network data within the park, personnel wear positioning devices, which receive signals from landmarks to determine the personnel's current location and obtain the personnel's location information; a path generation module, configured to generate path information based on the real road network data and personnel location information, wherein the path information includes multiple escape paths; generating the path information based on the real road network data and personnel location information includes: generating an escape path corresponding to each person's current location to the emergency assembly point based on the real road network data and personnel location information, wherein each person corresponds to at least one escape path; The load confirmation module is used to obtain the load information of each escape path based on the path information and personnel location information; a path optimization module, configured to adjust the path information according to the load information and generate path optimization information; The information sending module is used to send the path optimization information to the corresponding terminal device so that people can evacuate according to the corresponding escape path.
9. An electronic device comprising a memory and a processor, characterized in that: A computer program is stored in the memory, and the processor is configured to run the computer program to execute the emergency escape drill route adjustment method according to any one of claims 1 to 7.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the emergency escape drill route adjustment method according to any one of claims 1 to 7 are implemented.
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