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机构地区:[1]浙江水利水电学院电气工程学院,浙江杭州310018 [2]杭州威立雅科技有限公司,浙江杭州311202 [3]杭州电子科技大学自动化学院,浙江杭州310018
出 处:《中国给水排水》2016年第8期115-118,共4页China Water & Wastewater
基 金:国家自然科学基金资助重点项目(61233004);浙江省水利厅重点资助项目(RB1520);浙江省水利厅项目(RC1553);浙江省科技厅公益项目(2014C33101)
摘 要:在分析钱江枢纽闸站自动化工程的控制需求基础上,设计了钱江枢纽闸站控制系统的结构,通过局域网和Internet将控制系统的各现场控制单元以及各种控制设备连接到枢纽闸站监控中心,以实现高效的远程管理调度。通过分析PLC控制系统采集的各种信号的类型以及具体的点数设计了控制方案。同时详细介绍了上位机监控系统需要进行采集、统计、记录、控制、显示等各种操作的实现方式,并阐述了图像监视系统、仪表检测系统、交直流供电及微机保护系统如何协调工作,实现对钱江枢纽闸站及河道工程监控。系统投入运行近2年来稳定可靠,解决了该枢纽的防涝问题。Based on the analysis of the automation engineering control demand in Qianjiang junction sluice station, the structure of the control system was designed. All kinds of local control units and devices of the control system were connected to the monitoring center by LAN and Internet in order to achieve efficient remote management. The control scheme was designed by analyzing the types of the signals received by the PLC control system and their number. The functions of the upper monitor, such as collection, statistics, record, control, display and so on were introduced. How to achieve coordination among the image monitoring system, instrument detection system, AC and DC uninterrupted power supply and microcomputer protection system to monitor Qianjiang junction sluice station and river engineering was elaborated. The system has been put into operation for about two years in steady state, which prevents flood.
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