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Design Methodology of Passive Damped LCL Filter Using Current Controller for Grid-Connected Three-Phase Voltage-Source Inverters

机译:并网三相电压源逆变器无源阻尼LCL滤波器的电流控制器设计方法

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摘要

In grid-connected voltage-source inverters (VSIs), when compared with a simple inductive L filter, the LCL filter has a better performance in attenuating the high frequency harmonics caused by the pulse-width modulation of power switches. However, the resonance peaks generated by the filter inductors and capacitors can make a system unstable. In terms of simplicity and filter design cost, a passive damping method is generally preferred. However, its high power loss and degradation in high frequency harmonic attenuation are significant demerits. In this paper, a mathematical design solution for a passive LCL filter to derive filter parameters suppressing the high frequency current harmonics to 0.3% is proposed. The minimum filter inductance can be obtained to reduce the size of the filter. Furthermore, a minimum damping resistance design considering a current controller is analyzed for a stable closed-loop system. The proposed design method is verified by experimental results using a 5-kW three-phase prototype inverter.
机译:在并网电压源逆变器(VSI)中,与简单的电感L滤波器相比,LCL滤波器在衰减由功率开关的脉宽调制引起的高频谐波方面具有更好的性能。但是,滤波电感和电容产生的谐振峰值会使系统不稳定。考虑到简单性和滤波器设计成本,通常优选被动阻尼方法。然而,其高功率损耗和高频谐波衰减的降低是明显的缺点。本文提出了一种无源LCL滤波器的数学设计解决方案,该算法可得出将高频电流谐波抑制至0.3%的滤波器参数。可以获得最小的滤波器电感以减小滤波器的尺寸。此外,针对稳定的闭环系统,分析了考虑电流控制器的最小阻尼电阻设计。通过使用5kW三相原型逆变器的实验结果验证了所提出的设计方法。

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