首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Circular Array of Ultrasonic Sensor based DOA estimation: Location of multiple Partial Discharge in Transformer oil
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Circular Array of Ultrasonic Sensor based DOA estimation: Location of multiple Partial Discharge in Transformer oil

机译:基于超声波传感器的DOA估计的圆形阵列:变压器油中多局部放电的位置

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摘要

Location of Partial Discharge (PD) in transformers is very important, and many methodologies that have been carried forward in previous decades have a restriction theoretically, specially, in power transformers they cannot locate multiple PDs. Based on array signal processing a novel multiple partial discharges localization is presented in this paper. Ultrasonic signal emission occurs when the partial discharge occurs inside the transformer oil tank. Using ultrasonic sensor arrays located on the wall of the transformer tank, emitted ultrasonic signals is detected. Generally a single partial discharge will not occur in transformer there may be multiple partial discharge occur at different location. For detection of multiple partial discharges, we have used circular array of ultrasonic sensors (CAUS) in our proposed method. Primarily, by using Translation Invariant Wavelet Transform the partial discharge signals are de noised. To change the wide-band signal received by CAUS to the narrowband one Total Least Square algorithm is utilized. After this, the number of PD signals is estimated and to find the directions of arrival (DOA) of the signal sparse representation of array covariance vector technique is utilized. Lastly, on the basis of estimation of DOA position of PD source is detected with the help of optimization algorithm in order to find the exact coordinates of the PD source.
机译:变压器中的局部放电(PD)的位置非常重要,并且在前几十年中已经向前推进的许多方法理论上,特别是在电力变压器中的限制,它们无法定位多个PD。基于阵列信号处理本文提出了一种新颖的多部分放电定位。当局部放电发生在变压器油箱内时发生超声信号发射。使用位于变压器箱墙上的超声波传感器阵列,检测到发射的超声信号。通常,在变压器中,在变压器中不会发生单个局部放电可能存在多个局部放电在不同的位置发生。为了检测多个部分放电,我们在所提出的方法中使用了超声波传感器(原因)的圆形阵列。主要是,通过使用转换不变小波变换,局部放电信号是发出的。要更改由原位接收的宽带信号,以窄带一个总共有一个总是至少方形算法。在此之后,估计PD信号的数量并找到利用阵列协方差向量技术的信号稀疏表示的到达方向(DOA)。最后,在优化算法的帮助下检测到PD源的DOA位置的估计的基础,以找到PD源的精确坐标。

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