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文章摘要
三电平PWM并网变换器LCL滤波器量化设计
Quantitative Design of LCL Filter of Three-level PWMGrid-connected Converter
Received:January 12, 2015  Revised:April 07, 2015
DOI:
中文关键词: LCL滤波器  二重傅里叶  三电平变换器  谐波分析  谐波畸变率
英文关键词: LCL  filter, double  Fourier, three-level  converter, harmonic  analysis, Total  Harmonic Distortion
基金项目:国家自然科学基金项目;江苏省普通高校研究生科研创新计划项目
Author NameAffiliationE-mail
daipeng School of Information and Electrical Engineering China University of Mining Technology 13329285666@189.cn 
shixianglong* School of Information and Electrical Engineering China University of Mining Technology 554337237@qq.com 
yueyue School of Information and Electrical Engineering China University of Mining Technology  
yuanqingqing School of Optical-electrical and Computer Engineering University of Shanghai for Science and Technology  
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中文摘要:
      随着并网变换器容量的增大,LCL滤波器的优势更加明显。在满足相同滤波效果的情况下,LCL滤波器所需电感值比L滤波器要小。以谐波电流衰减比作为优化目标,参数设计会大于实际要求,增加滤波器的体积与成本。本文通过基于二重傅里叶级数的三电平变换器脉宽电压谐波分析结果,提出一种三电平PWM并网变换器LCL滤波器的设计方法,实现滤波性能的量化。该设计方法不是以降低网侧电流谐波含量为目标,而是在THD满足要求的情况下尽可能的降低LCL滤波器的规格,降低成本,并对设计的LCL滤波器进行了仿真和实验,验证了所提方法的有效性。
英文摘要:
      The advantages of the LCL type filter are presented by the increase of the capacitance of the grid-connected converter. LCL filter needs smaller inductance value comparing to L type filter at the same performance in harmonic suppression. With the input and output harmonic current attenuation ratio as the optimization target, the designed parameters may larger than the actual demand. It would lead to the increase of size and cost. This paper analyzes pulse width voltage harmonics at the side of three-level grid-connected converter based on double Fourier series, At last a quantitative design method of LCL Filter of three-level PWM grid-connected converter is proposed, which achieves specific quantization of the filter performance. This method is not designed to reduce the harmonic content of the grid current, but to meet the Total Harmonic Distortion (THD) requirements as much as possible to reduce the LCL filter specifications and cost. Finally, simulation and experimental results verify the effectiveness of the design.
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