Design of AC side filter for Grid Tied Solar Inverter

Asheesh Dhaneria, Hardik Khambhadiya
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引用次数: 3

Abstract

Solar inverter is a power electronics based converter which acts as interfacing media between solar PV panels and utility grid. IEEE 1547 has imposed limit on the magnitude of current harmonics around the inverter switching frequency. This limit necessitates the use of AC side filter at the output of the grid connected solar inverter, for connection with grid. This filter reduces the harmonic content in grid current so as to inject pure sinusoidal waveform into the grid. The filter should be so designed that it provides sufficient attenuation for the switching frequency harmonics but at the same time should allow a low impedance path for the fundamental component. Moreover the system size / volume must not increase significantly with the addition of filter. The AC side filter design needs the trade-off when considering the efficiency / switching loss and fundamental voltage drop. In this paper control theory modelling of LCL type filter is developed. Comparison of LCL filter with other filter topologies is carried out with respect to the control theory parameters like Bode plot. Detailed calculation of LCL filter for single phase grid connected solar inverter is also elaborated.
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并网太阳能逆变器交流侧滤波器的设计
太阳能逆变器是一种基于电力电子技术的变换器,是太阳能光伏板与公用电网之间的接口介质。IEEE 1547对逆变器开关频率附近电流谐波的大小进行了限制。这一限制要求在并网太阳能逆变器的输出端使用交流侧滤波器,以便与电网连接。该滤波器降低了电网电流中的谐波含量,从而将纯正弦波形注入电网。滤波器的设计应使其能够对开关频率谐波提供足够的衰减,但同时应允许基波分量具有低阻抗路径。此外,系统的大小/体积不能随着过滤器的添加而显著增加。交流侧滤波器设计需要在考虑效率/开关损耗和基波压降时进行权衡。本文建立了LCL型滤波器的控制理论模型。针对波德图等控制理论参数,对LCL滤波器与其他滤波器拓扑进行了比较。并详细阐述了单相并网太阳能逆变器LCL滤波器的计算方法。
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