Protection algorithm for a wind turbine generator based on positive- and negative-sequence fault components

T. Zheng, S. Cha, P. Crossley, Y. Kang
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引用次数: 8

Abstract

A protection relay for a wind turbine generator (WTG) based on positive- and negative-sequence fault components is proposed in the paper. The relay uses the magnitude of the positive-sequence component in the fault current to detect a fault on a parallel WTG, connected to the same power collection feeder, or a fault on an adjacent feeder; but for these faults, the relay remains stable and inoperative. A fault on the power collection feeder or a fault on the collection bus, both of which require an instantaneous tripping response, are distinguished from an inter-tie fault or a grid fault, which require a delayed tripping, using the magnitude of the positive-sequence component in the fault current. The fault type is first evaluated using the relationships between the positive- and negative-sequence fault components depending on type of fault. Then the magnitude of the positive-sequence component in the fault current is used to decide on either instantaneous or delayed operation. The operating performance of the relay is then verified using various fault scenarios modelled using EMTP-RV. The scenarios involve changes in the position and type of fault, and the faulted phases. Results confirm that the relay can successfully distinguish between faults that require an instantaneous, delayed or non-operation response.
基于正、负序故障分量的风力发电机组保护算法
提出了一种基于正序和负序故障分量的风力发电机组保护继电器。继电器使用故障电流中正序分量的大小来检测连接到同一电源收集馈线的并联WTG上的故障,或相邻馈线上的故障;但对于这些故障,继电器保持稳定和不工作。使用故障电流中正序分量的大小,可以将需要瞬时跳闸响应的集电馈线故障或采集总线故障与需要延迟跳闸的连接间故障或电网故障区分开来。首先根据断层类型,利用正负序断层分量之间的关系来评估断层类型。然后用故障电流中正序分量的大小来决定是瞬时运行还是延迟运行。然后使用EMTP-RV建模的各种故障场景验证继电器的操作性能。这些场景包括断层位置和类型的变化,以及断层阶段的变化。结果证实,该继电器能够成功地区分需要瞬时、延迟或非操作响应的故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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