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A novel directional relay for AC lines close to the HVDC installation

机译:适用于靠近HVDC安装的交流线路的新型定向继电器

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摘要

Compared with traditional distance protection based on fundamental components, the R-L differential-equation algorithm in time domain, which is free of eliminating aperiodic component and insensitive to grid frequency, is more suitable for the AC lines close to high voltage direct current (HVDC) installation. However, there is a problem of voltage dead zone which occurs when the R-L differential equation algorithm is directly applied on the AC lines. According to the difference between fault currents' characteristics provided by direct current (DC) system and receiving-end AC system, then forward and reverse faults on the outlets of AC lines can be identified based on the correlation of the measured voltage drop and calculated voltage drop. Therefore, a novel directional relay based on the correlation coefficient of voltage waveform (CCVW) and low voltage component is proposed. Finally, an extensive performance evaluation in PSCAD/EMTDC and MATLAB simulation verifies the effectiveness of the directional relay. Influencing factors and comparative analysis show that the directional relay has a high sensitivity, rapidity, and reliability.
机译:与传统的基于基本成分的距离保护相比,时域RL差分方程算法无需消除非周期性成分且对电网频率不敏感,因此更适合于高压直流(HVDC)安装的交流线路。但是,存在将R-L微分方程算法直接应用于交流线路时出现的电压死区的问题。根据直流系统和接收端交流系统提供的故障电流特性之间的差异,可以根据测得的电压降和计算出的电压的相关性,识别出交流线路出口上的正向和反向故障。下降。因此,提出了一种基于电压波形(CCVW)和低压分量的相关系数的新型定向继电器。最后,在PSCAD / EMTDC和MATLAB仿真中进行了广泛的性能评估,验证了定向继电器的有效性。影响因素和对比分析表明,定向继电器灵敏度高,速度快,可靠性高。

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