Maximum Likelihood-based Technique for Accurate Estimation of Time-delay between UHF Signals Radiated from Partial Discharge Sources

B. Anitha, C. Koley
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引用次数: 1

Abstract

One of the useful way for localization of partial discharge (PD) sources inside any electrical substation is the use of multiple ultra-high frequency (UHF) sensors. UHF signals radiated from any PD source can travel a longer distance and can be captured by the multiple UHF sensors placed around the substations. The localization of PD sources is done primarily by calculating the time delays between the impulsive signals received at the UHF sensors.However, the time delay estimation is very challenging in the presence of interference of other Electro-Magnetic signals. In the present work, several time domain and frequency domain based techniques have been investigated and applied on several PD signals captured from the different air-insulated substation in India. Various time-domain based techniques that have been applied are the first peak (FP), cross-correlation (CC), and cumulative energy (CE). The frequency-domain based Generalized Cross Correlation (GCC) technique has also been applied with their different weighing functions such are the Phase Transform (PHAT), Smoothed Coherence Transform (SCOT), Maximum Likelihood estimator and the Eckart Filter (EF). From the experimental result, it is observed that the GCC with ML estimator provide the most suitable result across different experimental conditions.
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基于最大似然的部分放电源超高频信号时延精确估计技术
局部放电(PD)源定位的有效方法之一是使用多个超高频(UHF)传感器。从任何PD源辐射的UHF信号可以传播更长的距离,并且可以被放置在变电站周围的多个UHF传感器捕获。局部放电源的定位主要是通过计算UHF传感器接收到的脉冲信号之间的时间延迟来完成的。然而,在存在其他电磁信号干扰的情况下,时延估计是非常具有挑战性的。在本工作中,研究了几种基于时域和频域的技术,并将其应用于从印度不同的空气绝缘变电站捕获的几个PD信号。已经应用的各种基于时域的技术有首峰(FP)、互相关(CC)和累积能量(CE)。基于频域的广义互相关(GCC)技术也被应用于不同的加权函数,如相位变换(PHAT)、平滑相干变换(SCOT)、极大似然估计和Eckart滤波器(EF)。实验结果表明,在不同的实验条件下,带有ML估计器的GCC提供了最合适的结果。
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