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Performance Analysis of Non-Conventional Distance Protection and Phase Selection Algorithms in Transmission Lines Little Longer than Half- Wavelength

机译:长于半波长的传输线非常规距离保护和选相算法的性能分析

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This work presents a performance analysis of non-conventional distance protection algorithm and phase selector in transmissions lines little longer than half-wavelength. Real and ideal transposition were considered for the Bergeron and JMarti line models. Simulations were performed in Alternative Transient Program under phase-to-ground and phase-to-phase solid short circuits. The voltage and current signals were emulated and applied to a commercial relay by a programmable test set. Unconventional algorithms were implemented in MATLAB with the objective of comparing and supporting the results obtained. An appropriate performance of the commercial relay was observed for faults applied up to approximately 514 km from the sending of the transmission line. The unconventional distance protection algorithm implemented showed effectiveness for faults applied up to approximately 1028 km, while the unconventional phase selection algorithm proved to be adequate for faults applied throughout the whole line extension.
机译:这项工作提出了在比半波长更长的传输线上非常规距离保护算法和相位选择器的性能分析。对于Bergeron和JMarti线模型,考虑了真实和理想的换位。模拟是在“替代暂态程序”下进行的,该方法在相接地和相间固态短路下进行。模拟电压和电流信号,并通过可编程测试仪将其施加到商用继电器上。为了比较和支持所获得的结果,在MATLAB中实现了非常规算法。对于从传输线发送到大约514 km的故障,观察到了商用继电器的适当性能。所实施的非常规距离保护算法显示出适用于大约1028 km的故障的有效性,而非常规的相位选择算法被证明足以应对整个线路扩展中应用的故障。

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