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首页> 外文期刊>IEEE Transactions on Power Delivery >Improved Single-Ended Traveling-Wave Fault-Location Algorithm Based on Experience With Conventional Substation Transducers
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Improved Single-Ended Traveling-Wave Fault-Location Algorithm Based on Experience With Conventional Substation Transducers

机译:基于常规变电站换能器经验的改进单端行波故障测距算法

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摘要

Single-ended unsynchronized traveling-wave fault-location algorithms have been around for several years. They avoid the costs and complexities associated with remote-end synchronization. Nevertheless, there is a corresponding increase in required signal processing as each reflection must be identified and then related in time to the signal wavefront. The current signal processing techniques include a combination of modal and wavelet analysis, where the resulting vectors are often squared. However, the performance of this process degrades dramatically with the filtering associated with the substation transducers and secondary circuits. Furthermore, the variation in observed reflection patterns demonstrates that these methods cannot adequately distinguish between faults on the near, or far half of the transmission line. This paper considers the traveling-wave data observed on a 330-kV transmission system and presents a new signal processing methodology to cater for the observations. This is based on the continuous wavelet transform that is calculated at a suitably large scale. The polarities of the resulting coefficients are used to confirm the nature of the fault and to infer the true fault location.
机译:单端非同步行波故障定位算法已经存在了几年。它们避免了与远程同步相关的成本和复杂性。然而,由于必须识别每个反射并且然后及时将其与信号波前相关,因此所需信号处理也相应增加。当前的信号处理技术包括模态分析和小波分析的组合,其中所得矢量通常是平方的。但是,此过程的性能会因与变电站换能器和二次电路相关的滤波而大大降低。此外,观察到的反射模式的变化表明,这些方法无法充分地区分传输线近端或远端一半的故障。本文考虑了在330 kV输电系统上观察到的行波数据,并提出了一种新的信号处理方法来满足这些观察要求。这基于连续小波变换,该连续小波变换以适当的大比例进行计算。所得系数的极性用于确认故障的性质并推断出真正的故障位置。

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