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A novel traveling-wave-based protection scheme for LCC-HVDC systems using Teager Energy Operator

机译:使用Teager能量算子的LCC-HVDC系统基于行波的新型保护方案

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Line Commutated Converter (LCC) based High-Voltage Direct Current (HVDC) technology has been in operation with a high level reliability and little maintenance requirements for more than thirty years. The current-source based or classical LCC-HVDC systems are being considered for buried cable transmission as well as overhead transmission. The fault analysis and protection of LCC-HVDC system is a very important aspect in terms of power system stability. This paper proposes a novel protection scheme for LCC-HVDC systems, in which the difference between propagation processes of traveling wave under internal and external faults is used as a criterion for detection of fault incidents in HVDC transmission lines. In order to quantify and intensify this difference, Teager Energy Operator (TEO) is used which has the ability to reflect the instantaneous energy of a signal. The main feature of the proposed scheme in comparison with the existing ones is that It operates faster, since it does not require to extract any harmonic or high frequency component; moreover, a 2-ms sampling window is sufficient for its algorithm which only deals with simple calculations. In order to validate the effectiveness of the proposed protection scheme, several fault events under different fault resistances and fault locations were simulated on a test network using PSCAD/EMTDC software. Also, the performance of the proposed scheme under real fault events was tested using four field data cases. Both simulation data and field data test results indicated that the proposed protection strategy has the ability to accurately discriminate between internal and external faults and detect the faulted pole in the bipolar systems even under high-impedance fault conditions.
机译:基于线路换向转换器(LCC)的高压直流(HVDC)技术已经运行了三十多年,具有很高的可靠性和极少的维护要求。正在考虑将基于电流源或经典的LCC-HVDC系统用于地下电缆传输以及架空传输。就电力系统的稳定性而言,LCC-HVDC系统的故障分析和保护是一个非常重要的方面。本文提出了一种新颖的LCC-HVDC系统保护方案,该方案将内部故障和外部故障下行波传播过程之间的差异作为检测HVDC输电线路故障事件的判据。为了量化和增强这种差异,使用了Teager能量算子(TEO),它能够反映信号的瞬时能量。与现有方案相比,该方案的主要特点是运行速度更快,因为它不需要提取任何谐波或高频分量。此外,2 ms的采样窗口足以满足其仅处理简单计算的算法。为了验证所提出保护方案的有效性,使用PSCAD / EMTDC软件在测试网络上模拟了不同故障电阻和故障位置下的若干故障事件。此外,使用四个现场数据案例测试了该方案在实际故障事件下的性能。仿真数据和现场数据测试结果均表明,即使在高阻抗故障条件下,所提出的保护策略也能够准确地区分内部和外部故障并检测双极性系统中的故障极。

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