Transmission side protection performance with Type-IV wind turbine system integration

Ankita Roy, B. Johnson
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引用次数: 11

Abstract

The converter controls of the full-converter based Type-IV wind turbine system (WTS) limits the fault current contribution to about 1.1-1.2 per unit (pu). Further, these fault currents are balanced even for unbalanced faults. The absence of significant fault current magnitudes and the lack of negative and zero sequence components in the fault currents poses challenges to the protection of power systems that interconnect wind turbines. This paper first presents the design of the controls of the grid-side voltage sourced converter (VSC) with an averaged non-switching model and a transmission interconnection through a step-up transformer. Faults are placed on the transmission system and fault currents and voltages are measured at relay location and converted to COMTRADE format. These are played back to a simulated relay to analyze the performance of distance elements and the protection elements that supervise them when the fault current is supplied by the grid side converter.
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传动侧保护性能与ⅳ型风力发电机组系统集成
基于全变流器的iv型风力发电系统(WTS)的变流器控制将故障电流贡献限制在每单位(pu) 1.1-1.2左右。此外,即使对于不平衡的故障,这些故障电流也是平衡的。故障电流中缺乏显著的故障电流大小和负序和零序分量,对互连风力涡轮机的电力系统的保护提出了挑战。本文首先介绍了具有平均非开关模型和升压变压器传输互连的电网侧电压源变换器(VSC)的控制设计。故障被放置在传输系统上,故障电流和电压在继电器位置测量并转换为COMTRADE格式。当故障电流由电网侧变流器提供时,将这些数据回放到模拟继电器,以分析距离元件和监督它们的保护元件的性能。
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