一种新型三相Buck-Boost光伏逆变器漏电流抑制研究

王立乔, 林健, 朱文通, 张佳慕, 董子亮

太阳能学报 ›› 2022, Vol. 43 ›› Issue (7) : 101-108.

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太阳能学报 ›› 2022, Vol. 43 ›› Issue (7) : 101-108. DOI: 10.19912/j.0254-0096.tynxb.2020-1199

一种新型三相Buck-Boost光伏逆变器漏电流抑制研究

  • 王立乔1, 林健1, 朱文通1, 张佳慕2, 董子亮1
作者信息 +

RESEARCH ON LEAKAGE CURRENT SUPPRESSION OF A NEW THREE-PHASE BUCK-BOOST PHOTOVOLTAIC INVERTER

  • Wang Liqiao1, Lin Jian1, Zhu Wentong1, Zhang Jiamu2, Dong Ziliang1
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文章历史 +

摘要

漏电流问题是限制非隔离型光伏逆变器广泛使用的关键因素之一。为解决该问题,提出一种可应用于光伏系统的新型三相Buck-Boost逆变器。首先介绍该逆变器的拓扑结构和工作原理,然后推导该拓扑在任意开关时刻共模电压的表达式,从而研究正弦脉宽调制(SPWM)和系统共模电压及漏电流之间的关系,并通过数学模型分析逆变器的升降压能力。最后通过实验平台对上述方案进行验证,实验结果证明了上述方案的有效性和可行性。

Abstract

The common mode current is one of the key factors limiting the widespread use of transformerless PV inverters. Thus, A new three-phase Buck-Boost inverter which can be used in solar PV systems is proposed in this paper to solve this problem. This paper firstly introduces the topology of the inverter, analyzing its working principle, deriving the expression of its common-mode voltage at any operating mode. The influence of the Sinusoidal Pulse Width Modulation (SPWM) on common-mode voltage (CMV) existing in this inverter and leakage current are then analyzed. Finally, the above scheme is verified by the simulation and experimental setup. According to the results and data from the experiments, this new inverter is effective and feasible.

关键词

非隔离型光伏逆变器 / 漏电流 / 正弦脉宽调制 / 可升降压

Key words

transformerless PV inverter / leakage current / SPWM / step-up/down

引用本文

导出引用
王立乔, 林健, 朱文通, 张佳慕, 董子亮. 一种新型三相Buck-Boost光伏逆变器漏电流抑制研究[J]. 太阳能学报. 2022, 43(7): 101-108 https://doi.org/10.19912/j.0254-0096.tynxb.2020-1199
Wang Liqiao, Lin Jian, Zhu Wentong, Zhang Jiamu, Dong Ziliang. RESEARCH ON LEAKAGE CURRENT SUPPRESSION OF A NEW THREE-PHASE BUCK-BOOST PHOTOVOLTAIC INVERTER[J]. Acta Energiae Solaris Sinica. 2022, 43(7): 101-108 https://doi.org/10.19912/j.0254-0096.tynxb.2020-1199
中图分类号: TM464   

参考文献

[1] 邬伟扬, 郭小强. 无变压器非隔离型光伏并网逆变器漏电流抑制技术[J]. 中国电机工程学报, 2012, 32(18): 1-8.
WU W Y, GUO X Q.Leakage current suppression technology for transformerless non-Isolated photovoltaic grid-connected inverter[J]. Proceedings of the CSEE, 2012, 32(18):1-8.
[2] LI W H, GU Y J, LUO H Z, et al.Topology review and derivation methodology of single-phase transformerless photovoltaic inverters for leakage current suppression[J]. IEEE transactions on industrial electronics, 2015, 62(7): 4537-4551.
[3] PAVLOV V G.Characterization of the insulation and leakage currents of PV generators: relevance for human safety[J]. Renewable energy, 2010, 35(3): 593-601.
[4] HAVANA A M, UN E.Performance analysis of reduced common-mode voltage PWM methods and comparison with standard PWM methods for three-phase voltage-source inverter[J]. IEEE transactions on power electronics, 2009, 24(1): 241-252.
[5] 王宝诚, 郭小强, 杨勇, 等. 阻抗源四桥臂光伏逆变器共模特性研究[J]. 电工技术学报, 2018, 33(24): 5848-5855.
WANG B C, GUO X Q, YANG Y, et al.Common mode behavior for Z-source four-leg inverter[J]. Transactions of China Electrotechnical Society, 2018, 33(24): 5848-5855.
[6] WANG H, LISERRE M, BLAABJERG F.Toward reliable power electronics: challenges,design tools,and opportunities[J]. IEEE industrial electronics magazine, 2013, 7(2): 17-26.
[7] JULIAN A L, ORITI G, LIPO T A, et al.Elimination of common-mode voltage in three-phase sinusoidal power converters[J]. IEEE transactions on power electronics, 2002, 14(5): 982-989.
[8] 张杰, 陈道炼, 江加辉, 等. 新颖的三相Boost型光伏并网逆变器[J].中国电机工程学报, 2017, 37(8): 2328-2339.
ZHANG J, CHEN D L, JIANG J H, et al.Novel three-phase boost type photovoltaic grid-connected inverter[J]. Proceedings of the CSEE, 2017, 37(8): 2328-2339.
[9] 郭小强. 三相H7电流源光伏逆变器共模电流抑制研究[J]. 中国电机工程学报, 2016, 36(17): 4665-4672.
GUO X Q.Common mode current suppression for transformerless three-phase H7 current source photovoltaic inverters[J]. Proceedings of the CSEE, 2016, 36(17): 4665-4672.
[10] SUN Y, LIU Y L, SU M, et al.Topology and control of a split-capacitor four-wire current source inverter with leakage current suppression capability[J]. IEEE transactions on power electronics, 2018, 33(12): 10803-10814.
[11] 徐倩. 三相电流型Buck-Boost逆变器研究[D]. 秦皇岛: 燕山大学, 2016.
XU Q.Research on three-phase current type buck-boost inverter[D]. Qinhuangdao: Yanshan University, 2016.
[12] SARNAGO H, LUCIA O, MEDIANO A, et al.Modulation scheme for improved operation of an RB-IGBT-based resonant inverter applied to domestic induction heating[J]. IEEE transactions on industrial electronics, 2013, 60(5): 2066-2073.
[13] 姜艳姝, 刘宇, 徐殿国, 等. PWM变频器输出共模电压及其抑制技术的研究[J]. 中国电机工程学报, 2005, 25(9): 47-53.
JIANG Y S, LIU Y, XU D G, et al.Research on common-mode voltage generated by a PWM inverter and its cancellation technology[J]. Proceedings of the CSEE, 2005, 25(9): 47-53.
[14] 董子亮. 三相电流型Buck-Boost逆变器漏电流抑制技术研究[D]. 秦皇岛: 燕山大学, 2017.
DONG Z L.The leakage current supression of three-phase current source Buck-Boost inverter[D]. Qinhuangdao: Yanshan University, 2017.
[15] 王立乔, 孙孝峰. 分布式发电系统中的光伏发电技术[M]. 北京: 机械工业出版社, 2010: 4-5.
WANG L Q, SUN X F.Photovoltaic generation technology in distributed generation system[M]. Beijing: China Machine Press, 2010: 4-5.
[16] LOPEZ O, TEODORESCU R, FREIJEDO F, et al.Eliminating ground current in a transformerless photovoltaic application[C]//IEEE Power Engineering Society General Meeting, Tampa, FL, USA, 2007: 1-5. doi: 10.1109/PES.2007.385789.

基金

国家自然科学基金(51677162); 河北省自然科学基金(E2017203235)

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