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Comparative evaluation of various passive filter types regarding their contribution to transformer's loading capacity under non-sinusoidal conditions

机译:比较各种类型的无源滤波器对非正弦条件下它们对变压器负载能力的影响

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This study aims to comparatively evaluate several kinds of passive filters by regarding their contribution on the loading capacity of the transformers under non-sinsuoidal conditions. For the comparative evaluation, the studied passive filter types are optimally designed to minimize the harmonic loss factor (Fhl) index, which is defined as a tool to determine the transformer's permissible loading capacity under non-sinusoidal current conditions in IEEE C.57.110 standard. According to the harmonic distortion limitations and the reactive power compensation level recommended in IEEE 519 standard, the individual and total harmonic distortions of voltage and current at point of common coupling (PCC) and displacement power factor are considered as constraints of the studied optimal filter design problems. The simulation results are provided for the typical industrial power system with background voltage distortion and nonlinear loads.
机译:这项研究旨在通过考虑无源滤波器在非正弦条件下对变压器负载能力的贡献来比较评估几种无源滤波器。为了进行比较评估,对研究的无源滤波器类型进行了最佳设计,以使谐波损耗因子(Fhl)指数最小化,该指数被定义为在IEEE C.57.1​​10标准中确定非正弦电流条件下变压器允许的负载能力的工具。根据谐波失真限制和IEEE 519标准中推荐的无功功率补偿水平,将公共耦合点(PCC)处电压和电流的单次谐波失真和总谐波失真以及位移功率因数视为所研究的最佳滤波器设计的约束。问题。针对具有背景电压失真和非线性负载的典型工业电力系统提供了仿真结果。

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