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Closed-Loop Traveling-Wave Relay Testing (TWRT) using RTDS Real-Time Simulators

机译:使用RTDS实时模拟器进行闭环行波中继测试(TWRT)

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This paper presents a methodology to perform closed-loop Traveling Wave Relay Testing (TWRT) for transmission lines in power systems using RTDS real-time simulator. The Traveling-Wave Relays (TWRs) have a high sampling rate, e.g., around 1MHz, therefore, one requirement for TWRT is that the simulator operates at a small time-step, i.e., in the order of one microsecond. The TW-based protection elements operate based on current and voltage TW signals that are derived from the High-Frequency (HF) response induced by faults on the transmission line. This paper shows that employing inaccurate line models in a simulator can result in incorrect TW signals. Therefore, another requirement for TWRT is to use accurate line models. Fulfilling these requirements requires high computational power and introduces challenges to real-time simulators for the TWRT application. This paper presents two real-time simulator approaches for TWRT: (i) an FPGA-based and (ii) a multi-core CPU-based approach. The proposed approaches are employed to test commercially available TWRs and the results are reported.
机译:本文提出了一种使用RTDS实时模拟器对电力系统传输线进行闭环行波中继测试(TWRT)的方法。行波继电器(TWR)具有很高的采样率,例如大约1MHz,因此,TWRT的一项要求是模拟器以较小的时间步长(即大约1微秒)运行。基于TW的保护元件基于电流和电压TW信号进行操作,该电流和电压TW信号是由传输线上的故障引起的高频(HF)响应得出的。本文表明,在模拟器中使用不正确的线模型可能会导致不正确的TW信号。因此,TWRT的另一个要求是使用精确的线模型。满足这些要求需要很高的计算能力,并给TWRT应用程序的实时仿真器带来了挑战。本文介绍了两种用于TWRT的实时模拟器方法:(i)基于FPGA的和(ii)基于多核CPU的方法。所提出的方法用于测试市售的TWR,并报告了结果。

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