Design of LCL filters in consideration of parameter variations for grid-connected converters

R. Meyer, A. Mertens
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引用次数: 30

Abstract

In this paper an efficient design process of LCL filters for grid-connected converters is described. It is especially developed to design filters for converters with low switching frequency generating harmonics in the entire frequency range. In these special applications, some small parameter variations can cause the given limits, like the allowed voltage harmonics, to be exceeded. In the worst case, the resonance frequency of the filter can be excited to an unacceptable extent. To avoid this, the tolerances of the filter parameters, the grid voltage and the grid frequency are taken into account when designing the filter. This essential consideration of the parameter variations distinguishes this new method from the well-known design processes. As an example, a filter design for a 5 MW wind energy generator with full-scale three-level medium-voltage converter is regarded more detailed. Measurements on a scaled low-voltage laboratory setup validate the theoretical calculations and complete the examination. The discussed design process enables a filter design meeting all grid code requirements concerning the voltage quality for all relevant operating ranges in consideration of various parameter variations. The method is suitable for all converter topologies and modulation schemes generating periodical output voltages.
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考虑并网变流器参数变化的LCL滤波器设计
本文介绍了并网变流器LCL滤波器的高效设计过程。它是专门为在整个频率范围内产生谐波的低开关频率变换器设计滤波器而开发的。在这些特殊应用中,一些小的参数变化可能导致给定的限制,如允许的电压谐波,被超过。在最坏的情况下,滤波器的谐振频率可能被激发到不可接受的程度。为了避免这种情况,在设计滤波器时考虑了滤波器参数、电网电压和电网频率的容差。这种对参数变化的基本考虑使这种新方法区别于众所周知的设计过程。以5mw风电机组全尺寸三电平中压变换器的滤波器设计为例,进行了较为详细的研究。在低压实验室装置上的测量验证了理论计算并完成了测试。所讨论的设计过程使滤波器设计能够满足所有相关工作范围内电压质量的所有电网规范要求,并考虑各种参数变化。该方法适用于产生周期性输出电压的所有变换器拓扑结构和调制方案。
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