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A novel optimisation method for the design of LCL filters for three-phase grid-tied inverters

机译:三相并网逆变器LCL滤波器设计的新优化方法

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Imprudent selection of passive LCL filter parameters may result in worse filtering and excessive power losses. Existing designs methods are only able to provide a range for LCL parameters to lie within and therefore are not able to guarantee performance before extensive trial and adjustments are carried out. To overcome this problem, a novel optimal filter design of LCL filters with passive damping is proposed in this paper. The method of this paper is based solving a multi-objective optimisation problem using genetic algorithm to obtain optimal parameters values for the LCL filter. The goal of the optimisation method is to achieve high harmonic attenuation performance, while at the same time achieve small switching frequency ripples. The design method is verified through simulation studies carried out on a three-phase grid-tied voltage source inverter (VSI) in a distributed generation (DG) system. The simulation results show that the new method can achieve ripple elimination and greater harmonic attenuation than existing methods.
机译:无源LCL滤波器参数选择不当可能会导致滤波效果变差和功率损耗过大。现有的设计方法只能为LCL参数提供一个范围,因此无法在进行广泛的试验和调整之前保证性能。为了克服这个问题,本文提出了一种具有被动阻尼的LCL滤波器的新型最优滤波器设计。本文的方法是基于遗传算法解决多目标优化问题,以获得LCL滤波器的最优参数值。优化方法的目标是实现高谐波衰减性能,同时实现较小的开关频率纹波。通过对分布式发电(DG)系统中的三相并网电压源逆变器(VSI)进行的仿真研究,验证了该设计方法。仿真结果表明,与现有方法相比,新方法可以消除纹波,并具有更大的谐波衰减。

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