Water quality sudden pollution dynamic early warning information monitoring system

Through dynamic water quality monitoring stations and wireless communication technology, dynamic monitoring and real-time early warning of target waters are achieved, and the problems of limited monitoring range and insufficient early warning in the existing technology are solved, and the flexibility and maintainability of the monitoring system are improved.

CN223260248UActive Publication Date: 2025-08-22济南市水利工程服务中心 +1
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Patent Information

Application Number
CN202422315344.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-08-22
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The existing water quality monitoring technology cannot achieve dynamic monitoring of target waters, resulting in limited monitoring range, untimely monitoring data, and insufficient early warning capabilities.

Method used

Multiple dynamic water quality monitoring stations are adopted, including shore base stations and water base stations, which are connected to the remote early warning center through wireless communication. The shore base station is fixed on the shore, and the water base station can be movable for monitoring, and dynamic monitoring and real-time data transmission are achieved with the transit device.

Benefits of technology

Dynamic monitoring and real-time early warning of target waters has been achieved, early warning capabilities have been improved, wiring and manual maintenance costs have been reduced, adapted to different water environments, and expanded the monitoring range.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a dynamic early warning information monitoring system for sudden water quality pollution. The dynamic early warning information monitoring system comprises a plurality of dynamic water quality monitoring stations, a plurality of transfer devices and a remote early warning center, the remote early warning center is arranged in an early warning monitoring room; the plurality of dynamic water quality monitoring stations can be in wireless communication connection with the remote early warning center by means of the transfer device; the dynamic water quality monitoring station comprises a shore base station and a water base station; the shore-based station is arranged on the shore side of a fixed water area for monitoring, and can be in wireless communication connection with the remote early warning center by means of the transfer device; the water base station can move to a target water area on the water to dynamically monitor water quality information at a fixed point. The early warning information monitoring system provided by the utility model can realize real-time dynamic monitoring of a target water area, and timely discover and early warn water quality sudden pollution events.
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Description

Technical Field

[0001] The utility model belongs to the technical field of water conservancy projects, and in particular relates to a dynamic early warning information monitoring system for sudden water pollution. Background Art

[0002] Environmental monitoring technology refers to the use of various technical means and methods to monitor, analyze, evaluate and predict environmental factors such as the atmosphere, water bodies and soil in order to understand and grasp the environmental quality status and its changing trends, and provide a scientific basis for environmental management and protection.

[0003] Existing water quality monitoring technology primarily relies on setting up fixed monitoring stations to regularly collect water samples, which are then analyzed in laboratories to obtain water quality data. While this method can obtain accurate test data, the fixed nature of the monitoring stations prevents dynamic monitoring of the target waters, making it impossible to detect and warn of sudden water pollution incidents in a timely manner.

[0004] Existing water quality monitoring technologies are unable to dynamically monitor and issue early warnings for water quality information in real time. There are problems such as limited monitoring range, untimely monitoring data, and insufficient early warning capabilities.

[0005] Therefore, how to achieve dynamic monitoring of target waters and timely warn of sudden water pollution incidents is an urgent problem to be solved in the current field of environmental monitoring and early warning technology. Utility Model Content

[0006] (1) Technical issues to be resolved

[0007] In view of the existing technical problems, the utility model provides a water quality sudden pollution dynamic early warning information monitoring system.

[0008] (2) Technical solution

[0009] In order to achieve the above-mentioned purpose, the main technical solutions adopted by this utility model include:

[0010] A water quality sudden pollution dynamic early warning information monitoring system, comprising: multiple dynamic water quality monitoring stations, multiple transfer devices and a remote early warning center;

[0011] The remote early warning center is arranged in the early warning monitoring room;

[0012] The plurality of dynamic water quality monitoring stations can be wirelessly connected to the remote early warning center by means of the transfer device;

[0013] The dynamic water quality monitoring station includes: a shore base station and a water base station;

[0014] The shore base station is arranged at a fixed water shore for monitoring and can be wirelessly connected to the remote warning center by means of the transfer device;

[0015] The water base station can move on the water to the target water area to perform dynamic fixed-point monitoring of water quality information.

[0016] Preferably, the shore base station comprises: a first water quality monitoring component, a base station platform, a first power supply component and a first wireless transceiver communication component;

[0017] The base station platform can be fixedly installed on the shore of the water area;

[0018] The first water quality monitoring component, the first power supply component and the first wireless transceiver communication component are all arranged on the base station platform;

[0019] The first water quality monitoring component is connected to the first wireless transceiver communication component;

[0020] The first power supply component is connected to the first water quality monitoring component and the first wireless transceiver communication component for power supply respectively.

[0021] Preferably, the first wireless transceiver communication component can be communicatively connected with the transfer device, and can be communicatively connected with the remote early warning center with the aid of the transfer device.

[0022] Preferably, the transfer device comprises: a communication data transfer unit, a power supply and a transfer tower;

[0023] The transfer tower is set on the land between the monitoring waters and the remote early warning center;

[0024] The communication data transfer unit and the power supply are both arranged on the transfer tower;

[0025] The power supply is connected to the communication data transfer unit for power supply.

[0026] Preferably, the communication data transfer unit can simultaneously establish wireless communication connections with a plurality of the shore base stations and / or a plurality of the water base stations;

[0027] The communication data transfer unit can also be connected to the remote early warning center via wireless communication.

[0028] Preferably, the water base station comprises: a second water quality monitoring component, a mobile platform on water, a second power supply component and a second wireless transceiver communication component;

[0029] The mobile water platform can float on the water surface and move on the water surface;

[0030] The second water quality monitoring component, the second power supply component and the second wireless transceiver communication component are all arranged on the mobile water platform;

[0031] The second water quality monitoring component is connected to the second wireless transceiver communication component;

[0032] The second power supply component is connected to the second water quality monitoring component and the second wireless transceiver communication component for power supply respectively.

[0033] Preferably, the second wireless transceiver communication component can be connected to the transfer device for communication, and can be connected to the remote early warning center for communication via the transfer device.

[0034] Preferably, the above-water mobile platform comprises: a mobile boat and an automatic driving device;

[0035] The remote warning center can be connected to the automatic driving device through wireless communication control;

[0036] The automatic driving device has a satellite positioning function;

[0037] The automatic driving device is arranged on the mobile boat and can control and drive the mobile boat to move to a point in the target water area.

[0038] Preferably, the remote warning center is capable of displaying warning information.

[0039] (3) Beneficial effects

[0040] The beneficial effects of the utility model are:

[0041] Dynamic Monitoring: This application proposes a dynamic water quality sudden pollution early warning information monitoring system. By setting up multiple dynamic water quality monitoring stations, including shore-based and water-based stations, this system can dynamically monitor target waters. The shore-based stations are stationary at the shore for detection, while the water-based stations can be moved to the target waters for dynamic, fixed-point detection. This overcomes the drawback of existing technologies where fixed monitoring stations preclude dynamic monitoring.

[0042] Real-time early warning: The system in this application transmits water quality information obtained by dynamic water quality monitoring stations to a remote early warning center in real time via wireless communication. The remote early warning center analyzes the received water quality information and immediately issues an early warning if an anomaly is detected, thus providing timely early warning of sudden water pollution incidents and improving early warning capabilities.

[0043] High cost-effectiveness: The system of this application adopts wireless communication technology and dynamic water quality monitoring stations, which reduces the cost of wiring and manual maintenance, improves the flexibility and maintainability of the system, and thus has high cost-effectiveness.

[0044] Strong environmental adaptability: Since the water base station can be moved within the water, the system can adapt to different water environments and terrain conditions, expanding the system's application range. Furthermore, because the system is based on wireless communication, it is not restricted by geographical location and can achieve wide-area monitoring and early warning. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] Figure 1 This is a structural diagram of a water quality sudden pollution dynamic early warning information monitoring system provided by the utility model. DETAILED DESCRIPTION

[0046] In order to better explain the present invention and facilitate understanding, the present invention is described in detail below through specific implementation methods in conjunction with the accompanying drawings.

[0047] like Figure 1 As shown: This embodiment discloses a water quality sudden pollution dynamic early warning information monitoring system, including: multiple dynamic water quality monitoring stations, multiple transfer devices and a remote early warning center.

[0048] The remote early warning center is arranged in the early warning monitoring room; a plurality of the dynamic water quality monitoring stations can be wirelessly connected to the remote early warning center by means of the transfer device.

[0049] In detail, the dynamic water quality monitoring station includes: a shore base station and a water base station; the shore base station is arranged on the shore of a fixed water area for monitoring, and can be wirelessly connected to the remote early warning center with the help of the transfer device; the water base station can move on the water to the target water area for dynamic fixed-point monitoring of water quality information.

[0050] The shore-based base station in this embodiment includes: a first water quality monitoring component, a base station platform, a first power supply component, and a first wireless transceiver communication component. The base station platform can be fixedly installed on the shore of a water area; the first water quality monitoring component, the first power supply component, and the first wireless transceiver communication component are all installed on the base station platform. The first water quality monitoring component is connected to the first wireless transceiver communication component; and the first power supply component is connected to the first water quality monitoring component and the first wireless transceiver communication component for power supply.

[0051] The first wireless transceiver communication component can be connected to the transfer device for communication, and can be connected to the remote early warning center for communication via the transfer device.

[0052] The transfer device in this embodiment includes: a communication data transfer unit, a power supply and a transfer tower; the transfer tower is arranged on the land between the monitored water area and the remote early warning center; the communication data transfer unit and the power supply are both arranged on the transfer tower; the power supply is connected to the communication data transfer unit for power supply.

[0053] Specifically, the communication data transfer unit can simultaneously establish wireless communication connections with multiple shore base stations and / or multiple water base stations; the communication data transfer unit can also establish wireless communication connections with the remote early warning center.

[0054] The water base station in this embodiment includes: a second water quality monitoring component, a water-based mobile platform, a second power supply component, and a second wireless transceiver communication component. The water-based mobile platform is capable of floating and moving on the water surface; the second water quality monitoring component, the second power supply component, and the second wireless transceiver communication component are all disposed on the water-based mobile platform; the second water quality monitoring component is connected to the second wireless transceiver communication component; and the second power supply component is connected to the second water quality monitoring component and the second wireless transceiver communication component for power supply.

[0055] The second wireless transceiver communication component can be connected to the transfer device for communication, and can be connected to the remote early warning center for communication via the transfer device.

[0056] It should be noted that the mobile platform on water includes a mobile boat and an autonomous driving device; the remote warning center is capable of wirelessly controlling the autonomous driving device; the autonomous driving device has a satellite positioning function; the autonomous driving device is mounted on the mobile boat and is capable of controlling the mobile boat to move to a target point in the waters. The remote warning center is capable of displaying warning information.

[0057] This embodiment provides a water quality sudden pollution dynamic early warning information monitoring system, which includes multiple dynamic water quality monitoring stations, multiple transfer devices and a remote early warning center. In specific applications, the following operations are performed:

[0058] Step 1: Install a dynamic water quality monitoring station. The dynamic water quality monitoring station consists of a shore-based station and a water-based station. The shore-based station is installed at a fixed location on the shore of a water body, while the water-based station can be moved to a target area to conduct dynamic, fixed-point water quality monitoring. Step 2: Install a transfer device. The transfer device connects the dynamic water quality monitoring station and the remote warning center. Through the transfer device, the dynamic water quality monitoring station can wirelessly connect to the remote warning center. Step 3: The remote warning center receives water quality data. The remote warning center analyzes the received water quality data and immediately issues an early warning signal if any abnormality is detected. This warning signal can be sent via text message, phone call, email, or other means to ensure that relevant personnel receive the warning information promptly. Step 4: The dynamic water quality monitoring station and the water-based station collect water quality data. The dynamic water quality monitoring station and the water-based station are equipped with sensors and data acquisition equipment that collect water quality data in real time and transmit the data to the remote warning center via the transfer device. The sensors and data acquisition equipment have extremely high accuracy and sensitivity, ensuring the accuracy and reliability of the collected data. The remote warning center in this embodiment also has a data storage and backup system to ensure data security and reliability. The data storage and backup system uses advanced data storage technology, can store large amounts of water quality data for a long time, and has high data recovery capabilities. In summary, the water quality sudden pollution dynamic early warning information monitoring system of this embodiment can achieve real-time dynamic monitoring of target waters, and promptly detect and warn of sudden water pollution incidents.

[0059] The technical principles of the present invention are described in conjunction with specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and are not to be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific implementations of the present invention without inventive effort, and such implementations will fall within the scope of protection of the present invention.

Claims

1. A water quality sudden pollution dynamic early warning information monitoring system, characterized in that: include: Multiple dynamic water quality monitoring stations, multiple transfer devices and remote early warning centers; The remote early warning center is arranged in the early warning monitoring room; The plurality of dynamic water quality monitoring stations can be wirelessly connected to the remote early warning center by means of the transfer device; The dynamic water quality monitoring station includes: a shore base station and a water base station; The shore base station is arranged at a fixed water shore for monitoring and can be wirelessly connected to the remote warning center by means of the transfer device; The water base station can move on the water to the target water area to perform dynamic fixed-point monitoring of water quality information.

2. The monitoring system according to claim 1, characterized in that The shore base station includes: a first water quality monitoring component, a base station platform, a first power supply component and a first wireless transceiver communication component; The base station platform can be fixedly installed on the shore of the water area; The first water quality monitoring component, the first power supply component and the first wireless transceiver communication component are all arranged on the base station platform; The first water quality monitoring component is connected to the first wireless transceiver communication component; The first power supply component is connected to the first water quality monitoring component and the first wireless transceiver communication component for power supply respectively.

3. The monitoring system according to claim 2, characterized in that The first wireless transceiver communication component can be connected to the transfer device for communication, and can be connected to the remote early warning center for communication with the transfer device.

4. The monitoring system according to claim 3, characterized in that: The transfer device includes: a communication data transfer unit, a power supply and a transfer tower; The transfer tower is set on the land between the monitoring waters and the remote early warning center; The communication data transfer unit and the power supply are both arranged on the transfer tower; The power supply is connected to the communication data transfer unit for power supply.

5. The monitoring system according to claim 4, characterized in that: The communication data transfer unit can simultaneously be connected to multiple shore base stations and / or multiple water base stations by wireless communication; The communication data transfer unit can also be connected to the remote early warning center via wireless communication.

6. The monitoring system according to claim 1, characterized in that: The water base station includes: a second water quality monitoring component, a water mobile platform, a second power supply component and a second wireless transceiver communication component; The mobile water platform can float on the water surface and move on the water surface; The second water quality monitoring component, the second power supply component and the second wireless transceiver communication component are all arranged on the mobile water platform; The second water quality monitoring component is connected to the second wireless transceiver communication component; The second power supply component is connected to the second water quality monitoring component and the second wireless transceiver communication component for power supply respectively.

7. The monitoring system according to claim 6, characterized in that: The second wireless transceiver communication component can be connected to the transfer device for communication, and can be connected to the remote early warning center for communication with the transfer device.

8. The monitoring system according to claim 7, characterized in that: The water mobile platform includes: a mobile boat and an automatic driving device; The remote warning center can be connected to the automatic driving device through wireless communication control; The automatic driving device has a satellite positioning function; The automatic driving device is arranged on the mobile boat and can control and drive the mobile boat to move to a point in the target water area.

9. The monitoring system according to claim 8, characterized in that: The remote early warning center can display early warning information.