电工技术学报  2016, Vol. 31 Issue (22): 186-193    DOI:
电力系统 |
采用双共模内回路抑制非隔离光伏并网系统的共模电流的研究
赵瑞广1, 刘栋良1, 2, 崔丽丽1, 魏红梅2
1. 杭州电子科技大学自动化学院 杭州 310018;
2. 卧龙电气集团股份有限公司 上虞 312300
Research of Common-Mode Current Suppression in Non-Isolated PV Grid-Connected System with Double Common-Mode Inner Loops
Zhao Ruiguang1, Liu Dongliang1, 2, Cui Lili1, Wei Hongmei2
1. College of Automation Hangzhou Dianzi University Hangzhou 310018 China;
2. Wolong Electric Co. Ltd Shangyu 312300 China
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摘要 非隔离光伏并网系统中共模电流高频分量的存在会使系统稳定性下降,在低功率运行时,对发电质量影响较大。单共模内回路法对高频分量抑制效果不理想。在构建共模电路等效模型,分析共模电流产生原因的基础上,提出了一种构建双共模内回路抑制共模电流高频分量方法。该方法在保证共模电流满足并网要求的前提下克服了单共模内回路发生高频谐振的缺点,很好地抑制了外部寄生回路共模电流中的高频分量。最后通过仿真和实验证明了所提方法的有效性。
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关键词 非隔离光伏并网系统共模电流内回路高频分量    
Abstract:The existence of high-frequency components in common-mode (CM) current would reduce the stability of non-isolated PV grid-connected system. In low power operation, it has great impacts on the output power quality. The single CM inner loop method in suppressing the high-frequency components was not ideal. Based on the CM equivalent circuit model and the causes of the CM current, a novel double CM inner loops method was proposed to restrain the high-frequency components in CM current. This method not only meets the grid connection demand of CM current, but also overcomes the high frequency resonant problem. Furthermore, the high-frequency components in CM current are substantially reduced. The simulating and experimental results have verified the proposed method.
Key wordsNon-isolated    PV grid-connected system    common-mode current    inner loop    high- frequency component   
收稿日期: 2016-03-30      出版日期: 2016-12-02
PACS: TM615  
基金资助:浙江省自然科学基金资助项目(LY15E070006)
作者简介: 赵瑞广男,1992年生,硕士研究生,研究方向为新能源电力与功率变化装置。E-mail:ruiguangdgg@163.com(通信作者);刘栋良男,1977年生,副研究员,研究方向为非线性控制策略、交流伺服及电力电子在新能源中的应用。E-mail:liudl@hdu.edu.cn
引用本文:   
赵瑞广, 刘栋良, 崔丽丽, 魏红梅. 采用双共模内回路抑制非隔离光伏并网系统的共模电流的研究[J]. 电工技术学报, 2016, 31(22): 186-193. Zhao Ruiguang, Liu Dongliang, Cui Lili, Wei Hongmei. Research of Common-Mode Current Suppression in Non-Isolated PV Grid-Connected System with Double Common-Mode Inner Loops. Transactions of China Electrotechnical Society, 2016, 31(22): 186-193.
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