
Research on Construction of Computer Monitoring System in Automatic Control of Sluice
Author(s) -
Bo Tian,
Hujun Wang,
Yang Wang,
Kangjie Ning,
Lanlan Duan,
Jin Liu,
Haifeng Zhang,
Ji Bin Zhao
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1992/2/022158
Subject(s) - sluice , hydropower , automation , inflow , engineering , marine engineering , automatic control , control (management) , computer monitoring , flood control , control system , civil engineering , control engineering , flood myth , computer science , real time computing , mechanical engineering , geology , electrical engineering , philosophy , oceanography , theology , archaeology , artificial intelligence , history
In the hydraulic structures of hydropower station and water conservancy project, sluice is one of the most important parts, which undertakes the tasks of flood control, sand flushing and water inflow. The water outlet can be closed or opened completely or partially according to the need. In order to better play the role of hydropower plants and water conservancy projects, the protection of hydraulic structures. Setting up computer monitoring system at these outlets can flexibly implement the automatic control of all kinds of sluices. Therefore, this paper studies the construction of computer system in sluice automation control. The second development is mainly based on the existing computer monitoring system to meet the functions of sluice gate data acquisition and processing, simple basic control, etc. Combined with the needs of local hydropower plants, the sluice flow detection and statistics, sluice gate group control functions are constructed. In this way, multiple sluices can be controlled at one time. Through real-time monitoring of the gate status and taking data modeling, the opening size of the gate can be calculated to realize the automatic control of each gate. Through the practical test results meet the design requirements, the running condition is normal.