张河湾抽水蓄能电站AVC子站系统设计及应用实现  被引量:11

Design of AVC Sub System and Its Realization for Zhanghewan Pumped Storage Plant

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作  者:单鹏珠[1] 张柏[1] 李勇 宋庆元[1] 罗兴锜[3] SHAN Pengzhu ZHANG Bail LI Yong SONG Qingyuan LUO Xingqi(NARI Group Corporation(State Grid Electric Power Research Institute), Nanjing 211106, Jiangsu, China Hebei Zhanghewan Pumped Storage Company, Shijiazhuang 050000, Hebei, China Institute of Water Resource and Hydro-Electric Engineering, Xi' an University of Technology, Xi' an 710048, Shaanxi, China)

机构地区:[1]南瑞集团公司(国网电力科学研究院),江苏南京211106 [2]河北张河湾蓄能发电有限责任公司,河北石家庄050000 [3]西安理工大学水利水电学院,陕西西安710048

出  处:《电网与清洁能源》2017年第4期137-142,共6页Power System and Clean Energy

基  金:国家自然科学重点基金(51339005)~~

摘  要:张河湾抽水蓄能电站计算机监控系统为法国阿尔斯通ALSPA P320产品,P320系统因Hydroprocess软件未进行配置而不具备AVC功能。根据河北省电力调度中心要求,电站增加了一套新的AVC子站系统。详细介绍了张河湾AVC子站系统的结构配置和功能设计,对试验过程和试验结果进行了阐述,并提出了改善AVC子站系统调节精度和调节效果的技术方法。此外,还简要介绍了AVC子站系统与阿尔斯通ALPHA P320监控系统的数据交互技术。The SCADA of Zhanghewan Pumped Storage Plant adopts the Alston ALSPA P320 system, however, because the hydroprocess software is not configured, the SCADA is not equipped with the AVC function. The new AVC sub system is added according to the requirements of the Hebei elec- tric power dispatching center. In this paper, the configuration and function design for Zhanghewan AVC sub system are introduced in detailed. The paper also describes the test process and results, and puts forward methods to improve the effect of AVC sub system adjusting. In addition, the paper introduces the data exchange technology between the newAVC sub system and Alston P320 SCADA system.

关 键 词:张河湾抽水蓄能电站 计算机监控系统 AVC ALSPA 

分 类 号:TM622[电气工程—电力系统及自动化]

 

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