Water station safety protection and emergency response integrated management system and method

Through the integrated management system of water station safety protection and emergency response, the problems of aging water station equipment and poor information communication have been solved, efficient data security, equipment protection and emergency response have been achieved, and the safe operation and emergency management capabilities of the water station have been improved.

CN120688742AInactive Publication Date: 2025-09-23WUHAN HAIERTE INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510785397.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-12
Publication Date
2025-09-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing water station management system has problems in terms of safety protection and emergency response, such as equipment aging not being discovered in time, high probability of equipment failure, and poor information communication leading to low efficiency of information sharing and collaborative operations.

Method used

An integrated management system for water station safety protection and emergency response was designed, including an encrypted data security module, a protection module, an environmental monitoring module, a collaborative information interaction module, and an emergency planning module. It uses dynamic encryption to store and transmit data, monitor microvibration and image data in real time, build an internal information interaction platform, share equipment operating status and personnel information in real time, and plan action processes and material allocation paths in disaster scenarios.

Benefits of technology

It improves the safety and operational efficiency of water stations, enhances the security and integrity of data, reduces the risk of equipment failure, improves information sharing and collaborative operation capabilities, ensures efficient and orderly emergency response, and minimizes the impact of disasters on water station operations and residents' water safety.

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Abstract

The invention relates to the technical field of hydraulic engineering safety management, and discloses a water station safety protection and emergency response integrated management system and method, and the method comprises an encrypted data safety module which carries out the dynamic encryption storage and transmission of various data at a generation source; the protection module is used for constructing a new equipment protection framework; the environment monitoring module is used for deploying modules capable of monitoring regional environment parameters of a machine room, a distribution room and the like in real time; the collaborative information interaction module is used for building a special platform and a data interface; and the emergency planning module is used for constructing an emergency plan system covering various disaster scenes and planning corresponding action processes and material allocation paths. The management level and the safety guarantee capability of the water station are comprehensively improved, the operation risk is reduced, and good economic and social benefits are brought.
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Description

Technical Field

[0001] The present invention relates to the technical field of water conservancy project safety management, and in particular to a water station safety protection and emergency response integrated management system and method. Background Art

[0002] In modern society, water stations are key infrastructure for ensuring water safety for residents and industrial water supply, and their stable operation is crucial. However, existing water station management faces many urgent challenges in terms of safety protection and emergency response.

[0003] From a safety and protection perspective, traditional water station monitoring systems have significant flaws. Aging and wear and tear on equipment at many water stations go undetected, leading to a high probability of sudden equipment failures, seriously impacting normal operation. For example, a water station in one region failed to detect a pump motor failure in time, resulting in a 24-hour water supply outage and significant inconvenience to local residents and industrial production. Existing technologies also face significant challenges in emergency response. Water stations involve multiple departments, including water services, environmental protection, and health. Poor information communication between these departments, coupled with inconsistent data formats and communication protocols, prevents efficient information sharing and collaborative work during emergency response.

[0004] Therefore, it is necessary to design an integrated management system and method for water station safety protection and emergency response to solve the problems of improving the efficient and safe operation of water stations and efficient information sharing and collaborative operations. Summary of the Invention

[0005] In view of this, the present invention proposes an integrated management system and method for water station safety protection and emergency response, aiming to solve the problem of improving the efficient and safe operation of water stations as well as efficient information sharing and collaborative operations.

[0006] In one aspect, the present invention proposes an integrated management system for water station safety protection and emergency response, comprising: an encrypted data security module for dynamically encrypting, storing, and transmitting the generation source of water station monitoring data;

[0007] The protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior of the water station;

[0008] Environmental monitoring module, used to monitor the temperature, humidity and harmful gas concentration data of the computer room and distribution room in real time;

[0009] A collaborative information exchange module is used to build an internal information exchange platform and a data interface. The internal information exchange platform shares information on the operating status of water station equipment and personnel on-the-job status in real time. The data interface is used to exchange information with external organizations.

[0010] The emergency planning module, when the protection module determines that the current scene has abnormal behavior, determines whether the current environment is a disaster scene based on real-time monitoring data. If the emergency planning module determines that the current environment is a disaster scene, it plans the corresponding action process and material deployment path based on the determined disaster scene;

[0011] The protection module and the environment monitoring module are wirelessly connected to the emergency planning module via the collaborative information interaction module.

[0012] Furthermore, the encrypted data security module, when used to dynamically encrypt and store the source of data, includes:

[0013] The encrypted data security module establishes an information security multiple encryption model and is configured as a dynamic key distribution method derived from the quantum key distribution principle. It dynamically encrypts and stores monitoring data and equipment operation data, and automatically updates the encryption key every 15 minutes.

[0014] The encrypted data security module sets an encryption trigger self-starting program at the data collection port, which is used to circulate the data in the internal information interaction platform and the process of interacting with external organizations in an encrypted form.

[0015] Furthermore, the protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior, including:

[0016] The protection module pre-processes the micro-vibration data and image data. The protection module has a preset threshold value for the characteristic parameters of normal micro-vibration data. If the characteristic parameters of the micro-vibration data exceed the preset normal threshold value, the protection module determines that there is abnormal vibration and starts image recognition for further confirmation. When the protection module preliminarily determines that the abnormal behavior is theft, the relevant information is immediately sent to the emergency planning module through the internal information interaction platform. The relevant information includes the time, location, specific situation description and on-site image of the abnormality.

[0017] Furthermore, the environmental monitoring module, when used to monitor the temperature data, humidity data and harmful gas concentration data of the computer room and the power distribution room in real time, includes:

[0018] The data acquired in real time by the environmental monitoring module is configured as: temperature data X0, humidity data Y0 and harmful gas concentration data Z0. The environmental monitoring module is preset with a temperature data threshold X, a humidity data threshold Y and a harmful gas concentration data threshold Z, and X, Y, Z>0;

[0019] When X0≥X and the duration is greater than 10 minutes, it is determined that the temperature in the equipment room or power distribution room is too high, and the environmental monitoring module sends a temperature abnormality alarm to the emergency planning module through the internal information interaction platform;

[0020] When Y0≥Y and the duration is greater than 60 minutes, it is determined that the humidity in the computer room or distribution room is too high, and the environmental monitoring module sends a humidity abnormality alarm to the emergency planning module through the internal information interaction platform;

[0021] When Z0≥Z and the duration is greater than 30 minutes, it is determined that the concentration of harmful gases in the computer room or distribution room is too high, and the environmental monitoring module sends an abnormal harmful gas concentration alarm to the emergency planning module through the internal information interaction platform;

[0022] When the temperature data X0, the humidity data Y0 and the harmful gas concentration data Z0 are all smaller than the corresponding preset data thresholds X, Y and Z, it is determined that the computer room or the power distribution room is in a normal operating state.

[0023] Furthermore, when the data interface is used to communicate information with external organizations, it includes:

[0024] The collaborative information interaction module is configured so that the data interface regularly reports data information of the water station to the regulatory department at a preset time K, and the data information includes operation data and water quality monitoring results.

[0025] Furthermore, when the emergency planning module plans the corresponding action process and material deployment path based on the determined disaster scenario, it includes:

[0026] The emergency planning module is configured with a disaster scenario preset library, which stores digital models of six types of disaster scenarios: theft, fire, flood, equipment failure, harmful gas leakage, and network attack. When the emergency planning module receives an abnormal alarm from the environmental monitoring module or the protection module transmitted by the information interaction platform, it matches the disaster scenario according to the alarm type and automatically generates an action process including personnel evacuation routes, equipment emergency shutdown sequences, and emergency material call sequences.

[0027] Furthermore, when the emergency planning module automatically generates an action flow including personnel evacuation routes, equipment emergency shutdown sequences, and emergency material call sequences, it includes:

[0028] The emergency planning module is also equipped with a dynamic path planning model, which calculates the optimal transportation route for emergency supplies from the warehouse to the disaster site, and simultaneously avoids the channel areas damaged by the disaster. The collaborative information interaction module obtains equipment status and personnel location in real time, and updates the emergency plan every 2 minutes. If the evacuation channel is detected to be blocked or the material transportation is delayed, the alternative route will be replanned immediately.

[0029] Compared with the prior art, the present invention has the following beneficial effects:

[0030] 1. The encrypted data security module dynamically encrypts data storage and transmission at the source, significantly enhancing data security. This encryption effectively prevents data theft or tampering during storage, safeguarding the integrity and confidentiality of critical data in water station operations. During data transmission, dynamic encryption technology protects against cyberattacks, ensuring data security during transmission and minimizing operational risks and security risks associated with data leaks.

[0031] 2. The protection module builds an equipment protection architecture, integrates micro-vibration sensing and image recognition technology, collects data in real time to detect abnormal behaviors such as illegal touching and prying, and quickly alarms, providing reliable protection for the equipment, reducing the risk of theft and damage, ensuring stable operation of the equipment, and reducing downtime and maintenance costs; the environmental monitoring module monitors the temperature, humidity and harmful gas concentration data of the computer room and distribution room in real time to ensure that the equipment operates in a suitable environment, prevent equipment failures and safety accidents caused by unsuitable temperature and humidity or harmful gas leakage, and adjust the environment in advance through real-time monitoring, thereby extending the service life of the equipment and reducing equipment failures and downtime caused by environmental problems.

[0032] 3. The internal information interaction platform and data interface built by the collaborative information interaction module connect the information flow channels inside and outside the water station, share the equipment operation and personnel on-the-job information in real time, promote the collaboration of various departments, improve work efficiency, and exchange information with relevant departments externally to enhance overall management and emergency response capabilities; the emergency planning module formulates action procedures and material allocation path plans for disaster scenarios, which can be quickly activated in the event of a sudden disaster, ensure that the rescue work is carried out in an orderly manner, ensure that emergency materials are in place in time, maintain the basic operation of the water station, minimize the impact of disasters on the operation of the water station and the safety of residents' water use, and protect the water station infrastructure.

[0033] On the other hand, the present application also provides a water station safety protection and emergency response integrated management method, based on the water station safety protection and emergency response integrated management system, including the following steps:

[0034] S100: Dynamically encrypt, store and transmit the source of water station monitoring data;

[0035] S200: Real-time monitoring of micro-vibration data and image data of water stations to identify abnormal behavior of water stations;

[0036] S300: Real-time monitoring of temperature, humidity, and hazardous gas concentration data in the equipment room and power distribution room;

[0037] S400: Building an internal information exchange platform and a data interface. The internal information exchange platform shares information on the operating status of water station equipment and personnel on-the-job status in real time. The data interface is used to exchange information with external organizations.

[0038] S500: When it is determined that there is abnormal behavior in the current scene, whether the current environment is a disaster scene is determined based on real-time monitoring data. If the current environment is determined to be a disaster scene, the corresponding action process and material allocation path are planned based on the determined disaster scene.

[0039] It is understandable that the above-mentioned integrated management system and method for water station safety protection and emergency response have the same beneficial effects and will not be repeated here. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the drawings to represent the same components. In the drawings:

[0041] Figure 1 This is a functional block diagram of the integrated management system for water station safety protection and emergency response provided by an embodiment of the present invention;

[0042] Figure 2 This is a flow chart of the integrated management method for water station safety protection and emergency response provided by an embodiment of the present invention. DETAILED DESCRIPTION

[0043] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that, unless there is a conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.

[0044] Reference Figure 1 As shown, in some embodiments of the present application, a water station safety protection and emergency response integrated management system includes:

[0045] Encrypted data security module, used for dynamic encryption storage and transmission of water station monitoring data at the source;

[0046] The protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior of the water station;

[0047] Environmental monitoring module, used to monitor the temperature, humidity and harmful gas concentration data of the computer room and distribution room in real time;

[0048] A collaborative information exchange module is used to build an internal information exchange platform and a data interface. The internal information exchange platform shares information on the operating status of water station equipment and personnel on-the-job status in real time. The data interface is used to exchange information with external organizations.

[0049] The emergency planning module, when the protection module determines that the current scene has abnormal behavior, determines whether the current environment is a disaster scene based on real-time monitoring data. If the emergency planning module determines that the current environment is a disaster scene, it plans the corresponding action process and material deployment path based on the determined disaster scene;

[0050] The protection module and the environment monitoring module are wirelessly connected to the emergency planning module via the collaborative information interaction module.

[0051] From the above, we can see that the encrypted data security module starts the encryption program at the source of the water station monitoring data, dynamically encrypts the stored data and keeps it encrypted throughout the transmission process; the protection module continuously monitors micro-vibration and image data in real time, and uses an algorithm that integrates micro-vibration sensing technology and image recognition technology to identify abnormal behavior; the environmental monitoring module uses sensors to continuously obtain temperature, humidity and harmful gas concentration data in the computer room and distribution room in real time; the platform and interface built by the collaborative information interaction module realize real-time sharing of equipment operation status and personnel on-the-job information internally, and actively exchanges information with environmental protection, water affairs and other agencies externally; the emergency planning module plans action processes and material allocation paths for different disaster scenarios in advance through simulation analysis and other means, so that the emergency plan can be quickly launched once a disaster occurs.

[0052] Specifically, the encrypted data security module is used to dynamically encrypt and store the source of data, including:

[0053] The encrypted data security module establishes a multiple encryption model for information security and is configured as a dynamic key distribution method derived from the principle of quantum key distribution. It dynamically encrypts and stores monitoring data and equipment operation data, and automatically updates the encryption key every 15 minutes.

[0054] The encrypted data security module sets an encryption trigger self-starting program at the data collection port to encrypt the data on the internal information exchange platform and in the process of interacting with external organizations.

[0055] It is understandable that by establishing a multiple encryption model for information security and utilizing a dynamic key distribution method derived from the principle of quantum key distribution, the security of data storage has been greatly enhanced. The principle of quantum key distribution itself is extremely secure, and the dynamic key distribution method derived from it allows monitoring data and equipment operation data to be strictly protected during storage. The encryption key is automatically updated every 15 minutes, making it difficult for those attempting to steal data to crack the key in a short period of time. This effectively prevents data from being illegally obtained and tampered with, ensures data integrity and confidentiality, and provides a reliable data foundation for water stations to conduct analysis and decision-making based on historical data. In the data transmission process, the encrypted data security module sets an encryption trigger self-starting program at the data collection port, so that data on the internal information exchange platform and during interactions with external organizations are transmitted in encrypted form. This measure effectively protects against various risks in the network transmission process, such as hacker attacks and network monitoring. It avoids the outflow of sensitive information such as water station operation information and key monitoring data due to data transmission leakage, reduces the operational risks and safety hazards faced by the water station, ensures the security of data interaction between various departments within the water station and between the water station and external organizations, promotes the smooth and safe flow of information, and helps to improve the overall management efficiency and coordination capabilities of the water station.

[0056] Specifically, the protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior, including:

[0057] The protection module pre-processes the micro-vibration data and image data. The protection module has a preset threshold for the characteristic parameters of normal micro-vibration data. If the characteristic parameters of the micro-vibration data exceed the preset normal threshold, the protection module determines that there is abnormal vibration and starts image recognition for further confirmation. When the protection module preliminarily determines that the abnormal behavior is theft, it immediately sends the relevant information to the emergency planning module through the internal information interaction platform. The relevant information includes the time, location, specific situation description and on-site image of the abnormality.

[0058] As can be understood, preprocessing microvibration and image data, and presetting thresholds for characteristic parameters of normal microvibration data, enables rapid screening and preliminary identification of abnormal vibrations. Once microvibration data exceeds the preset threshold, image recognition is immediately initiated for further confirmation. This significantly improves the accuracy of abnormal behavior identification, avoids potential misjudgments that can arise from relying solely on single data points, and accurately identifies true security threats. If the abnormal behavior is initially determined to be theft, relevant information, including the time, location, a description of the incident, and on-site images, is quickly transmitted to the emergency planning module via an internal information exchange platform. This efficient information transmission mechanism enables the emergency planning module to obtain detailed and accurate on-site information immediately, enabling rapid response and the development of targeted emergency response plans. Detailed on-site information facilitates the rational deployment of emergency resources, such as dispatching security personnel to the scene, reducing time wasted due to inappropriate resource allocation, improving emergency response efficiency, and minimizing the impact of theft on water station operations.

[0059] Specifically, the environmental monitoring module is used to monitor the temperature, humidity, and harmful gas concentration data of the computer room and distribution room in real time, including:

[0060] The data acquired in real time by the environmental monitoring module is configured as: temperature data X0, humidity data Y0 and harmful gas concentration data Z0. The environmental monitoring module is preset with temperature data threshold X, humidity data threshold Y and harmful gas concentration data threshold Z, and X, Y, Z>0;

[0061] When X0 ≥ X and the duration is greater than 10 minutes, it is determined that the temperature in the equipment room or power distribution room is too high. The environmental monitoring module sends a temperature anomaly alarm to the emergency planning module through the internal information exchange platform.

[0062] When Y0 ≥ Y and lasts for more than 60 minutes, it is determined that the humidity in the equipment room or distribution room is too high. The environmental monitoring module sends a humidity anomaly alarm to the emergency planning module through the internal information exchange platform.

[0063] When Z0≥Z and the duration is greater than 30 minutes, it is determined that the concentration of harmful gases in the equipment room or distribution room is too high. The environmental monitoring module sends an abnormal harmful gas concentration alarm to the emergency planning module through the internal information exchange platform.

[0064] When the temperature data X0, the humidity data Y0 and the harmful gas concentration data Z0 are all less than the corresponding preset data thresholds X, Y and Z, it is determined that the computer room or the power distribution room is in normal operation.

[0065] Specifically, when the data interface is used to exchange information with external organizations, it includes: the collaborative information interaction module is configured to report the water station's data information to the regulatory department regularly at the data interface preset time K (K is in days, K=7), and the data information includes operating data and water quality monitoring results.

[0066] Specifically, the emergency planning module plans the corresponding action process and material allocation path based on the judged disaster scenario, including:

[0067] The emergency planning module is equipped with a disaster scenario preset library, which stores digital models of six types of disaster scenarios: theft, fire, flood, equipment failure, hazardous gas leakage, and cyber attack. When the emergency planning module receives an abnormal alarm from the environmental monitoring module or the protection module transmitted by the information interaction platform, it matches the disaster scenario according to the alarm type and automatically generates an action process including personnel evacuation routes, equipment emergency shutdown sequences, and emergency material call sequences.

[0068] Specifically, when the emergency planning module automatically generates an action flow that includes personnel evacuation routes, equipment emergency shutdown sequences, and emergency material deployment sequences, it includes:

[0069] The emergency planning module is also equipped with a dynamic path planning model, which calculates the optimal transportation route for emergency supplies from the warehouse to the disaster site, and simultaneously avoids the channel areas damaged by the disaster. The module obtains the equipment status and personnel location in real time through the collaborative information interaction module, and updates the emergency plan every 2 minutes. If the evacuation channel is detected to be blocked or the material transportation is delayed, the alternative route will be replanned immediately.

[0070] The emergency planning module's preset disaster scenario library stores digital models of six disaster scenarios. Upon receiving an anomaly alert, it accurately matches the corresponding scenario and automatically generates an action plan, including evacuation routes, equipment emergency shutdown sequences, and emergency supply deployment sequences. This significantly improves the accuracy and efficiency of emergency response. Faced with different types of disasters, personnel no longer need to reconsider response strategies; they can act quickly according to established procedures, ensuring personnel safety, minimizing equipment damage and material waste, and maintaining critical water station functions. A dynamic path planning model accurately calculates the optimal transportation route from the warehouse to the disaster site, while avoiding damaged corridors and ensuring the fastest delivery of emergency supplies. The collaborative information exchange module provides real-time access to equipment status and personnel locations, and updates the emergency plan every two minutes to ensure it remains relevant. If an evacuation route is blocked or a supply delay is detected, an alternate route is immediately replanned, effectively avoiding disruptions to emergency response efforts caused by routing issues. This improves the flexibility and adaptability of the entire emergency response process, comprehensively enhancing the water station's ability to respond to various disasters and minimizing the impact of disasters on station operations and personnel safety.

[0071] Reference Figure 2 As shown, the present application also provides an integrated management method for water station safety protection and emergency response, including the following steps: dynamically encrypting, storing and transmitting the source of water station monitoring data; real-time monitoring of the micro-vibration data and image data of the water station to identify abnormal behaviors of the water station; real-time monitoring of the temperature data, humidity data and harmful gas concentration data of the computer room and distribution room; building an internal information interaction platform and a data interface, the internal information interaction platform shares information on the operating status of water station equipment and the on-the-job status of personnel in real time, and the data interface is used to exchange information with external organizations; when it is determined that the current scene has abnormal behavior, the current environment is judged to be a disaster scene based on the real-time monitoring data. If the current environment is judged to be a disaster scene, the corresponding action process and material allocation path are planned based on the judged disaster scene.

[0072] Compared with the existing technology, the beneficial effects of the present invention are as follows: the encrypted data security module performs dynamic encryption storage and transmission at the source of data generation, greatly enhancing data security. Through encryption processing, data can be effectively prevented from being stolen or tampered with during storage, ensuring the integrity and confidentiality of various key data in water station operations. During data transmission, dynamic encryption technology can resist network attacks, ensure the security of data during transmission, and avoid operational risks and safety hazards caused by data leakage. The protection module builds an equipment protection architecture, integrates micro-vibration sensing and image recognition technology, collects data in real time to detect abnormal behaviors such as illegal touching and prying, and quickly issues an alarm, providing reliable protection for the equipment, reducing the risk of theft and damage, ensuring stable operation of the equipment, and reducing downtime maintenance costs; the environmental monitoring module monitors the temperature, humidity and harmful gas concentration data of the computer room and distribution room in real time to ensure that the equipment operates in a suitable environment, prevent equipment failures and safety accidents caused by temperature and humidity inappropriateness or harmful gas leakage, and adjust the environment in advance through real-time monitoring, extending the service life of the equipment and reducing equipment failures and downtime caused by environmental problems. The internal information interaction platform and data interface built by the collaborative information interaction module connect the information flow channels inside and outside the water station, share equipment operation and personnel on-the-job information in real time internally, promote collaboration among departments, improve work efficiency, and exchange information with relevant departments externally to enhance overall management and emergency response capabilities; the emergency planning module formulates action procedures and material allocation path plans for disaster scenarios, which can be quickly activated in the event of an emergency, ensure that rescue work is carried out in an orderly manner, ensure that emergency materials are in place in a timely manner, maintain the basic operation of the water station, minimize the impact of disasters on water station operations and residents' water safety, and protect the water station infrastructure.

[0073] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit it. Although the present invention has been described in detail with reference to the above embodiments, ordinary technicians in the field should understand that the specific implementation methods of the present invention can still be modified or replaced by equivalents. Any modification or equivalent replacement that does not depart from the spirit and scope of the present invention should be covered by the scope of protection of the claims of the present invention.

Claims

1. A water station safety protection and emergency response integrated management system, characterized in that: include: Encrypted data security module, used for dynamic encryption storage and transmission of water station monitoring data at the source; The protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior of the water station; Environmental monitoring module, used to monitor the temperature, humidity and harmful gas concentration data of the computer room and distribution room in real time; A collaborative information exchange module is used to build an internal information exchange platform and a data interface. The internal information exchange platform shares information on the operating status of water station equipment and personnel on-the-job status in real time. The data interface is used to exchange information with external organizations. The emergency planning module, when the protection module determines that the current scene has abnormal behavior, determines whether the current environment is a disaster scene based on real-time monitoring data. If the emergency planning module determines that the current environment is a disaster scene, it plans the corresponding action process and material deployment path based on the determined disaster scene; The protection module and the environmental monitoring module are wirelessly connected to the emergency planning module via the collaborative information interaction module.

2. The integrated management system for water station safety protection and emergency response according to claim 1 is characterized in that: The encrypted data security module, when used to dynamically encrypt and store the source of data, includes: The encrypted data security module establishes an information security multiple encryption model and is configured as a dynamic key distribution method derived from the quantum key distribution principle. It dynamically encrypts and stores monitoring data and equipment operation data, and automatically updates the encryption key every 15 minutes. The encrypted data security module sets an encryption trigger self-starting program at the data collection port, which is used to circulate the data in the internal information interaction platform and the process of interacting with external organizations in an encrypted form.

3. The integrated management system for water station safety protection and emergency response according to claim 1 is characterized in that: The protection module is used to monitor the micro-vibration data and image data of the water station in real time and identify abnormal behavior, including: The protection module pre-processes the micro-vibration data and image data. The protection module has a preset threshold value for the characteristic parameters of normal micro-vibration data. If the characteristic parameters of the micro-vibration data exceed the preset normal threshold value, the protection module determines that there is abnormal vibration and starts image recognition for further confirmation. When the protection module preliminarily determines that the abnormal behavior is theft, the relevant information is immediately sent to the emergency planning module through the internal information interaction platform. The relevant information includes the time, location, specific situation description and on-site image of the abnormality.

4. The integrated management system for water station safety protection and emergency response according to claim 1 is characterized in that: The environmental monitoring module, which is used to monitor the temperature, humidity, and harmful gas concentration data of the computer room and the power distribution room in real time, includes: The data acquired in real time by the environmental monitoring module is configured as: temperature data X0, humidity data Y0 and harmful gas concentration data Z0. The environmental monitoring module is preset with a temperature data threshold X, a humidity data threshold Y and a harmful gas concentration data threshold Z, and X, Y, Z>0; When X0≥X and the duration is greater than 10 minutes, it is determined that the temperature in the equipment room or power distribution room is too high, and the environmental monitoring module sends a temperature abnormality alarm to the emergency planning module through the internal information interaction platform; When Y0≥Y and the duration is greater than 60 minutes, it is determined that the humidity in the computer room or distribution room is too high, and the environmental monitoring module sends a humidity abnormality alarm to the emergency planning module through the internal information interaction platform; When Z0≥Z and the duration is greater than 30 minutes, it is determined that the concentration of harmful gases in the computer room or distribution room is too high, and the environmental monitoring module sends an abnormal harmful gas concentration alarm to the emergency planning module through the internal information interaction platform; When the temperature data X0, the humidity data Y0 and the harmful gas concentration data Z0 are all smaller than the corresponding preset data thresholds X, Y and Z, it is determined that the computer room or the power distribution room is in a normal operating state.

5. The integrated management system for water station safety protection and emergency response according to claim 1 is characterized in that: The data interface is used to communicate with external organizations, including: The collaborative information interaction module is configured so that the data interface regularly reports data information of the water station to the regulatory department at a preset time K, and the data information includes operation data and water quality monitoring results.

6. The integrated management system for water station safety protection and emergency response according to claim 1 is characterized in that: The emergency planning module plans the corresponding action process and material deployment path based on the determined disaster scenario, including: The emergency planning module is configured with a disaster scenario preset library, which stores digital models of six types of disaster scenarios: theft, fire, flood, equipment failure, harmful gas leakage, and network attack. When the emergency planning module receives an abnormal alarm from the environmental monitoring module or the protection module transmitted by the information interaction platform, it matches the disaster scenario according to the alarm type and automatically generates an action process including personnel evacuation routes, equipment emergency shutdown sequences, and emergency material call sequences.

7. The integrated management system for water station safety protection and emergency response according to claim 6 is characterized in that: When the emergency planning module automatically generates an action flow including personnel evacuation routes, equipment emergency shutdown sequences, and emergency material deployment sequences, it includes: The emergency planning module is also equipped with a dynamic path planning model, which calculates the optimal transportation route for emergency supplies from the warehouse to the disaster site, and simultaneously avoids the channel areas damaged by the disaster. The collaborative information interaction module obtains equipment status and personnel location in real time, and updates the emergency plan every 2 minutes. If the evacuation channel is detected to be blocked or the material transportation is delayed, the alternative route will be replanned immediately.

8. A water station safety protection and emergency response integrated management method, characterized in that: The integrated management system for water station safety protection and emergency response applied to any one of claims 1 to 7 comprises the following steps: S100: Dynamically encrypt, store and transmit the source of water station monitoring data; S200: Real-time monitoring of micro-vibration data and image data of water stations to identify abnormal behavior of water stations; S300: Real-time monitoring of temperature, humidity, and hazardous gas concentration data in the equipment room and power distribution room; S400: Building an internal information exchange platform and a data interface. The internal information exchange platform shares information on the operating status of water station equipment and personnel on-the-job status in real time. The data interface is used to exchange information with external organizations. S500: When it is determined that there is abnormal behavior in the current scene, whether the current environment is a disaster scene is determined based on real-time monitoring data. If the current environment is determined to be a disaster scene, the corresponding action process and material allocation path are planned based on the determined disaster scene.