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Comparison of the acoustic performance and positioning accuracy of three kinds of planar partial discharge ultrasonic array sensors

机译:三种平面局部放电超声阵列传感器的声学性能和定位精度比较

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摘要

The detection of partial discharge (PD) sources in electrical equipment is very important for safe and stable operation of power systems as it allows for the timely elimination of insulation faults. Cross, circular and square array sensors are commonly used in the detection. In order to determine which form is the best, this study compares the acoustic performance and positioning accuracy of the different arrays. Firstly, this study does research on the quantitative evaluation of the acoustic performance of the planar ultrasonic array sensors. Sparse signal decomposition theory is then applied to find three different directions of arrival (DOAs) of the signal from the PD source to the array sensor. Next, using two of the DOAs (azimuth and pitch), the location of the PD is determined as the centre of a sphere whose surface is tangential to the three DOAs in three different planes. The positioning accuracy of the sensors is then derived. Finally, simulation results show that the acoustic performance of the circular array is the best. It also produces the most accurate location results. Therefore, a circular array is the optimal form to use for the construction of a planar array sensor.
机译:电气设备中局部放电(PD)源的检测对于电力系统的安全稳定运行非常重要,因为它可以及时消除绝缘故障。十字,圆形和方形阵列传感器通常用于检测。为了确定哪种形式是最好的,本研究比较了不同阵列的声学性能和定位精度。首先,本研究对平面超声阵列传感器的声学性能进行了定量评估。然后应用稀疏信号分解理论来找到从PD源到阵列传感器的信号的三个不同到达方向(DOA)。接下来,使用两个DOA(方位角和螺距),将PD的位置确定为球体的中心,该球体的表面在三个不同平面中与三个DOA相切。然后得出传感器的定位精度。最后,仿真结果表明圆形阵列的声学性能最佳。它还会产生最准确的定位结果。因此,圆形阵列是用于构造平面阵列传感器的最佳形式。

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