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An Efficient Procedure To Design Passive Lci-filters For Active Power Filters

机译:设计有源功率滤波器无源Lci滤波器的有效过程

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摘要

Variable high switching frequencies in grid-connected active power filters could lead to low harmonic performance and expose power systems to EMI issues too. A low-pass passive LCL-filter is usually used to interconnect a power electronic converter to a grid system. (This can also be done by using a passive L-filter.) Nevertheless, designing an LCL-filter is not simple because of high compensating bandwidth and variable frequency modulations involved in active filters. This paper examines various effective conditions on designing this kind of passive LCL-filters. Then it will propose a comprehensive design procedure in which both the outcomes of the active filter and the network obligations are taken into account. Principal advantages of this proposal are reduction of power losses of the passive filter, lowering the converter's switching ratings and the simplicity of the suggested design algorithm. A typical grid-connected shunt active filter is considered, and the needed interconnecting LCL-filter is designed using the proposed method. Then, the whole system is simulated with S1MULINK to verify the discussed procedure. Simulations confirm substantial reduction in power losses and converter current ratings.
机译:并网有源功率滤波器中可​​变的高开关频率可能导致低谐波性能,并使电源系统也面临EMI问题。低通无源LCL滤波器通常用于将功率电子转换器与电网系统互连。 (这也可以通过使用无源L滤波器来完成。)但是,由于有源滤波器涉及高补偿带宽和可变频率调制,因此设计LCL滤波器并不简单。本文研究了设计这种无源LCL滤波器的各种有效条件。然后,它将提出一个综合的设计程序,其中要考虑有源滤波器的结果和网络义务。该建议的主要优点是减少了无源滤波器的功率损耗,降低了转换器的开关额定值,并简化了所建议的设计算法。考虑了典型的并网并联有源滤波器,并使用提出的方法设计了所需的互连LCL滤波器。然后,使用S1MULINK对整个系统进行仿真,以验证所讨论的过程。仿真证实了功率损耗和转换器电流额定值的大幅降低。

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