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±200 MVar STATCOM保护策略配置与优化

郑传材, 江文东, 张锐冬, 徐强超, 伊洋

郑传材, 江文东, 张锐冬, 徐强超, 伊洋. ±200 MVar STATCOM保护策略配置与优化[J]. 南方能源建设, 2015, 2(S1): 60-65. DOI: 10.16516/j.gedi.issn2095-8676.2015.S1.013
引用本文: 郑传材, 江文东, 张锐冬, 徐强超, 伊洋. ±200 MVar STATCOM保护策略配置与优化[J]. 南方能源建设, 2015, 2(S1): 60-65. DOI: 10.16516/j.gedi.issn2095-8676.2015.S1.013
ZHENG Chuancai, JIANG Wendong, ZHANG Ruidong, XU Qiangchao, YI Yang. Relay Protection Strategies Composition and Optimization of ±200 MVar STATCOM[J]. SOUTHERN ENERGY CONSTRUCTION, 2015, 2(S1): 60-65. DOI: 10.16516/j.gedi.issn2095-8676.2015.S1.013
Citation: ZHENG Chuancai, JIANG Wendong, ZHANG Ruidong, XU Qiangchao, YI Yang. Relay Protection Strategies Composition and Optimization of ±200 MVar STATCOM[J]. SOUTHERN ENERGY CONSTRUCTION, 2015, 2(S1): 60-65. DOI: 10.16516/j.gedi.issn2095-8676.2015.S1.013
郑传材, 江文东, 张锐冬, 徐强超, 伊洋. ±200 MVar STATCOM保护策略配置与优化[J]. 南方能源建设, 2015, 2(S1): 60-65. CSTR: 32391.14.j.gedi.issn2095-8676.2015.S1.013
引用本文: 郑传材, 江文东, 张锐冬, 徐强超, 伊洋. ±200 MVar STATCOM保护策略配置与优化[J]. 南方能源建设, 2015, 2(S1): 60-65. CSTR: 32391.14.j.gedi.issn2095-8676.2015.S1.013
ZHENG Chuancai, JIANG Wendong, ZHANG Ruidong, XU Qiangchao, YI Yang. Relay Protection Strategies Composition and Optimization of ±200 MVar STATCOM[J]. SOUTHERN ENERGY CONSTRUCTION, 2015, 2(S1): 60-65. CSTR: 32391.14.j.gedi.issn2095-8676.2015.S1.013
Citation: ZHENG Chuancai, JIANG Wendong, ZHANG Ruidong, XU Qiangchao, YI Yang. Relay Protection Strategies Composition and Optimization of ±200 MVar STATCOM[J]. SOUTHERN ENERGY CONSTRUCTION, 2015, 2(S1): 60-65. CSTR: 32391.14.j.gedi.issn2095-8676.2015.S1.013

±200 MVar STATCOM保护策略配置与优化

详细信息
    作者简介:

    郑传材(1983),男,广东汕头人,工程师,工学硕士,主要从事电力系统电力系统分析运行与控制,继电保护自动化研究工作(e-mail)gdchzcc@126.com。

  • 中图分类号: TM761

  • 摘要: ±200 MVar STATCOM是迄今世界上最大容量的动态无功补偿设备,因其对电网电压支撑作用和较高的设备造价,需要深入探讨对换流器件和辅助设备保护策略,以确保设备安全可靠运行。文中在简要分析多级联H桥STATCOM主电路、H桥结构和元件特性的基础上,从装置级保护策略、功率单元保护策略和失灵保护策略3个方面,分析STATCOM在工程应用中的保护配置策略,并提出优化措施。保护配置策略的明晰和优化,对多H桥级联STATCOM工程应用有较大的指导意义。
    Abstract: ±200 MVar STATCOM is by far the largest-capacity dynamic reactive power compensation device in the world. Because of the voltage-supporting function and higher cost, it is necessary to discuss protection strategies of commutation devices and auxiliary equipment; and then, to make it safety and reliable. In this paper, on the basic of analyzing main circuit design and H-bridge structure of cascaded STATCOM, select and discuss several aspects of relay-protection including device-level protection strategies of STATCOM, module-level protection strategies of STATCOM, breaker malfunction protection strategies; finally propose optimizations for protection scheme. A Clearer protection configuration and optimization strategies have a greater significance for multi-H-bridge cascade STATCOM in engineering applications.
  • 期刊类型引用(2)

    1. 徐亮亮,陈波. 百兆乏级STATCOM继电保护系统设计. 电力勘测设计. 2020(09): 54-59 . 百度学术
    2. 王延纬,覃芸,龚贤夫,左郑敏. 广东电网异步联网模式下的静止同步补偿器优化配置. 广东电力. 2017(07): 53-59 . 百度学术

    其他类型引用(1)

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出版历程
  • 收稿日期:  2015-09-25

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    YI Yang

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