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The Simulation Study of the Influence of the Conformal Array Vector Curvature on the Direction-finding Precision of the PD Source

机译:共形阵列矢量曲率对PD源测向精度影响的仿真研究

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Ultrasonic array detection is a new detection method with high signal-to-noise ratio (SNR) and wide range of application. The traditional planar array sensor can't completely correspond to the electrical equipment with irregular surface in that the conformal array sensor is the top priority. In practical detection, the different curvatures of the electrical equipment lead to diverse effect on the precision of the partial discharge source. Therefore, it is necessary to study the variation rule of direction finding accuracy under different curvature of carrier. In this paper, the ultrasonic detection of conformal array sensors based on different curvature radii is launched. A direction finding algorithm named EULER-MUSIC for conformal array sensors is proposed, and a simulation study of the performance of the algorithm under different curvature radii is carried out. The simulation results show that when the curvature of carrier is 0.4 m, the direction finding error is about 10°, in addition, when the curvature of carrier is less than 0.4 m, the direction finding error of partial discharge source decreases greatly, and when the curvature of carrier is greater than 0.4 m, the direction finding error tends to be stable.
机译:超声波阵列检测是一种新的检测方法,具有较高的信噪比(SNR)和广泛的应用范围。传统的平面阵列传感器不能完全对应于具有不规则表面的电气设备,因为保形阵列传感器是当务之急。在实际检测中,电气设备的不同曲率会对局部放电源的精度产生不同的影响。因此,有必要研究载体不同曲率下测向精度的变化规律。本文提出了基于不同曲率半径的共形阵列传感器的超声检测方法。提出了一种用于共形阵列传感器的测向算法EULER-MUSIC,并对该算法在不同曲率半径下的性能进行了仿真研究。仿真结果表明,当载流子曲率为0.4 m时,测向误差约为10°,此外,当载流子曲率小于0.4 m时,局部放电源的测向误差明显减小,当载流子的曲率小于0.4 m时,测向误差减小。当载体的曲率大于0.4m时,测向误差趋于稳定。

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