| 注册
首页|期刊导航|水电站机电技术|抽水蓄能机组智能开关站的调试研究

抽水蓄能机组智能开关站的调试研究

王建飞

水电站机电技术2025,Vol.48Issue(7):28-32,5.
水电站机电技术2025,Vol.48Issue(7):28-32,5.DOI:10.13599/j.cnki.11-5130.2025.07.009

抽水蓄能机组智能开关站的调试研究

Research on the commissioning of intelligent switchyards for pumped storage units

王建飞1

作者信息

  • 1. 中国水利水电第三工程局有限公司,陕西 西安 710024
  • 折叠

摘要

Abstract

As the significance of pumped storage power stations in the power system becomes increasingly prominent,the commissioning of intelligent switchyards is recognized as a critical step to ensure their safe and stable operation.In this study,the commissioning technology of intelligent switchyards for pumped storage units was thoroughly examined,with the structural characteristics,functional features,and essential role of intelligent switchyards in these power stations elaborated upon.Theoretical support for commissioning practices was provided through an introduction to fundamental aspects of the technology,including its purpose,preparatory work,required tools,and safety training.Emphasis was placed on the practical commissioning process,detailing key steps such as equipment installation,wiring inspection,software installation,parameter setting,network configuration,functional testing,fault diagnosis,and troubleshooting,along with a summary of experience gained during the commissioning process.The application of intelligent technologies,such as the Internet of Things and artificial intelligence,was explored to enable functions like equipment status monitoring,fault warning and diagnosis,and optimized operation control in switchyards.This study aims to provide comprehensive and systematic guidance for the commissioning of intelligent switchyards for pumped storage units,ensuring improved commissioning efficiency and quality while supporting the reliable operation of pumped storage power stations.

关键词

抽水蓄能机组/智能开关站/调试技术/智能化应用

Key words

pumped storage unit/intelligent switchyard/commissioning technology/intelligent application

分类

建筑与水利

引用本文复制引用

王建飞..抽水蓄能机组智能开关站的调试研究[J].水电站机电技术,2025,48(7):28-32,5.

水电站机电技术

1672-5387

访问量0
|
下载量0
段落导航相关论文