电力电子变流器对dgus故障时电流-电压行为的影响。第一部分:风能转换系统

S. Saleh, A. Aljankawey, M. A. Khaizaran, B. Alsayid
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引用次数: 3

摘要

对清洁和可持续电力能源日益增长的兴趣推动了增加风能转换系统(WECS)与公用事业电网的互连。大多数wcs的设计采用电力电子变换器(PECs),其通常具有非线性和开关特性。wcs中PECs的特性、运行和控制会导致故障期间的非常规电流-电压行为。本文研究了微电网及其主电网发生故障时的电流-电压行为。本文研究了双馈感应发电机(DFIGs)和基于永磁发电机(pmg)的两种类型的wecs。对并网运行中出现的不同故障进行了实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influences of power electronic converters on current-voltage behaviors during faults in DGUs-Part I: Wind energy conversion systems
The growing interests in clean and sustainable electric energy push towards increasing the interconnection of wind energy conversion systems (WECS) to utility grids. Designs of the majority of WECSs employ power electronic converters (PECs), which generally have non-linear and switched characteristics. The characteristics, operation, and control of PECs in WECSs can result in non-conventional current-voltage behaviors during faults. This paper investigates the current-voltage behaviors during faults that occur in WECSs or their host grids. Two types of WECSs are considered in this paper, which are the doubly-fed induction generators (DFIGs) and permanent magnet generator (PMGs) based WECSs. The current-voltage behaviors are investigated in experimentations for different faults occurring during the grid-connected operation.
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