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Generalized LCL-Filter Design Algorithm for Grid-Connected Voltage-Source Inverter

机译:并网电压源逆变器的广义LCL滤波器设计算法

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摘要

LCL-filters are preferred over conventional L-filters for grid-connected voltage-source inverters (VSIs) due to their superior harmonic attenuation and smaller filter size and weight. The LCL-filter design process is complex and takes an iterative approach due to the considerations of resonance damping, reactive power compensation, harmonic attenuation limits, etc. This paper analyses the parameters of LCL-filter design in order to understand its significance in grid-connected applications. Secondly, based on the analysis, relationships between the resonance frequency, attenuation of switching ripple, reactive power production, and the ratio between the grid-side inductor and the inverter-side inductor are used to realize a simple LCL-filter design algorithm. The design considers LCL-filter as a single filtering unit rather than individual filtering contributions from passive components. The design is verified by simulations in MATLAB and validated experimentally via a hardware prototype. Results demonstrate the efficacy of the proposed method in terms of total harmonic distortion, harmonic attenuation, and reactive power compensated.
机译:对于并网电压源逆变器(VSI),LCL滤波器优于常规L滤波器,因为它们具有出色的谐波衰减以及较小的滤波器尺寸和重量。 LCL滤波器的设计过程很复杂,并且由于考虑了谐振阻尼,无功补偿,谐波衰减限制等因素,因此采取迭代方法。本文分析了LCL滤波器设计的参数,以了解其在电网中的意义。连接的应用程序。其次,在分析的基础上,利用谐振频率,开关纹波衰减,无功功率以及电网侧电感与逆变器侧电感之比之间的关系,实现了简单的LCL滤波器设计算法。该设计将LCL滤波器视为单个滤波单元,而不是无源组件的单个滤波作用。该设计通过MATLAB中的仿真进行验证,并通过硬件原型进行实验验证。结果证明了该方法在总谐波失真,谐波衰减和无功补偿方面的有效性。

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