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What are the information management systems for smart water management?
The intelligent water information management system is a comprehensive solution based on technologies such as the Internet of Things, automation control, and wireless communication networks. It achieves intelligent management of the entire water flow through the collaboration of intelligent hardware and software platforms.
. The following are specific system classifications and functional analysis:1. The core functional module of the intelligent water management system is built around the four directions of "monitoring, control, scheduling, and optimization", including the following modules
1. Function positioning of the intelligent monitoring system: real-time collection of all elements of water management data, replacing the limitations of manual inspections.
. Monitoring object: Water information: water quantity, water quality (pH value, dissolved oxygen, turbidity, etc.), water level, flow rate. Equipment status: working status and electrical parameters (voltage, power, electricity consumption) of water pumps, valves, gate stations, and drainage pipe networks. Environmental data: rain conditions, water conditions, and risk of mountain flood disasters. Technical support: Hardware: liquid level sensor, flow meter, water quality sensor, intelligent water and electricity meter, camera. Communication: Wireless transmission technologies such as 4G, WIFI, Ethernet, LoRa, etc. Output: real-time data, video, alarm signals. Image: Intelligent monitoring system covers the entire process of water management data collection 2 The functional positioning of the comprehensive control system is to achieve remote supervision and
3. Detailed scheduling system function positioning: dynamically adjust water resource allocation based on real-time data. Scheduling Logic: Logic Control Engine: Automatically generates control commands based on process equipment status parameters such as water level and pressure. Execution terminal: intelligent control cabinet, electric valve, variable frequency water pump, etc. Application scenario: Pipeline pressure balance: Avoiding pipe bursts or insufficient water supply through remote pressure regulation. Emergency dispatch: Quickly switch water sources or routes in case of sudden pollution or equipment failure. Energy saving optimization: Adjust the operating frequency of the pump station according to the peak and valley of water consumption. 4. Optimize the functional positioning of the management system: Support decision-making and continuo

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