An intelligent water gate control system based on water level monitoring and prediction

By setting differentiated monitoring cycles and gradient control strategies in the sluice gate control system, the problems of data timeliness and prediction accuracy of traditional sluice gate control systems have been solved, enabling forward-looking prediction and rapid response to water level changes, thereby improving flood control safety and water resource utilization efficiency.

CN122411599APending Publication Date: 2026-07-17SHANDONG YELLOW RIVER ENG GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG YELLOW RIVER ENG GRP CO LTD
Filing Date
2026-04-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional sluice gate control systems rely on manual inspections and experience-based adjustments, making it difficult to respond quickly to sudden changes in water levels. The monitoring data lacks timeliness and cannot accurately predict water level changes, resulting in untimely flood control and posing a risk of flooding.

Method used

The intelligent sluice gate control system based on water level monitoring and prediction achieves forward-looking prediction and precise control of water level changes by differentiating the collection cycles of monitoring points in tributaries and main streams, dynamically adjusting the collection frequency in conjunction with early warning conditions, calculating water flow propagation time, adopting a gradient control strategy, and coordinating with the upper-level sluice gate for coordinated control.

Benefits of technology

It significantly improves the intelligence and precision of sluice gate control, ensures the timeliness and comprehensiveness of data, enables rapid response to abnormal water levels, reduces flood risk, enhances the flood control capacity and water resource utilization efficiency of the basin, and meets the needs of modern water conservancy projects.

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Abstract

本发明涉及水闸控制技术领域,具体公开了一种基于水位监控预测的智能水闸控制系统,包括:监测点模块:以目标水闸与上一级水闸间为管控流域单元,布设支、干流监测点,优化点位布局;监测模块:预设支、干流差异化采集周期,触发预警工况时采集,预警解除后回调,无数据则判定点位故障并提醒维护;数据模块:计算水流从监测点至目标水闸的单点、汇流传播时间,综合两类时间输出水流最早到达目标水闸的时间;水位模块:计算最早到达时间的水位涨幅,预测未来水位,水位达防洪警戒水位时启动梯度调控;本系统优化监测与调控逻辑,实现水位精准预判和梯度协同调控,提升水闸管控智能化与流域防洪能力,适配现代化水利管控需求。
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