引用本文:杨 堤,程浩忠,马紫峰,方斯顿,徐国栋,管晟超,孙权才.基于储能技术提高风电机组低电压穿越能力的分析和展望[J].电力自动化设备,2015,35(12):
YANG Di,CHENG Haozhong,MA Zifeng,FANG Sidun,XU Guodong,GUAN Shengchao,SUN Quancai.Analysis and prospect of LVRT improvement based on energy storage technology for wind turbine generator system[J].Electric Power Automation Equipment,2015,35(12):
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基于储能技术提高风电机组低电压穿越能力的分析和展望
杨 堤1, 程浩忠1, 马紫峰2, 方斯顿1, 徐国栋1, 管晟超1, 孙权才1
1.上海交通大学 电力传输与功率变换控制教育部重点实验室,上海 200240;2.上海交通大学 化学工程系,上海 200240
摘要:
常用提高低电压穿越能力的技术中, 存在控制策略法算法较复杂而且不够可靠,Crowbar电路法电阻选取要求高、控制易失效、不能提供无功支持等问题。首先对国内外低电压穿越技术标准进行了概述,分析了当前主要低电压穿越技术研究情况;然后对储能技术的特点及其在低电压穿越技术研究中的拓扑结构、特性等进行了探讨;最后对基于储能技术的低电压穿越技术应用前景进行了分析和展望。
关键词:  低电压穿越  储能  风电  超级电容器  飞轮  超导储能  蓄电池  控制
DOI:
分类号:
基金项目:国家重点基础研究发展计划(973计划)项目(2014CB23903);国家自然科学基金资助项目(51337005)
Analysis and prospect of LVRT improvement based on energy storage technology for wind turbine generator system
YANG Di1, CHENG Haozhong1, MA Zifeng2, FANG Sidun1, XU Guodong1, GUAN Shengchao1, SUN Quancai1
1.Key Laboratory of Control of Power Transmission and Conversion of Ministry of Education, Shanghai Jiao Tong University,Shanghai 200240,China;2.School of Chemical Engineering, Shanghai Jiao Tong University,Shanghai 200240,China
Abstract:
Among the common technologies for improving the LVRT (Low Voltage Ride Through) ability,the control strategy method is complex and unreliable,while the Crowbar circuit method suffers for the difficult resistance selection,control failure and impossible reactive-power support. The LVRT technology standards at home and abroad are summarized and the current research status of main LVRT technologies is analyzed. The characteristics of energy storage technology,as well as its topology and features in the applications of LVRT technology,are discussed. The development trend of LVRT technology based on energy storage technology is analyzed and prospected.
Key words:  LVRT  energy storage  wind power  super capacitor  flywheel  superconductive magnetic energy storage  electric batteries  control

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