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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >On the estimation of actual space charge using pulsed electro-acoustic system
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On the estimation of actual space charge using pulsed electro-acoustic system

机译:用脉冲电声系统估算实际空间电荷

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摘要

Pulsed electro-acoustic measurement system is one of the versatile systems for measurement of charges accumulated in dielectric materials. The charge is measured as a voltage signal observed at an amplifier output which gets input from an acoustic sensor. Because of limited frequency bandwidth of the acoustic sensor and amplifier, all experimentally acquired signals require processing technique like deconvolution to estimate original signal (charge). Due to presence of noise in all experimental signals, deconvolution turns out to be an optimization problem. The optimum deconvolution involves estimation of optimum value of a deconvolution parameter, also known as regularization parameter. This parameter controls the tradeoff between signal distortion and noise minimization. In literature, several methods were suggested for estimation of optimum value of regularization parameter. However, each method yields a different estimate for the parameter. In this paper, the suitability of these conventional methods is investigated for estimation of space charge. Also a simple, yet, better estimation method, specific to space charge estimation, is presented. Interesting results and discussion on efficacy of these methods against, simple spectral division followed by Gaussian filtering, is also presented.
机译:脉冲电声测量系统是用于测量电介质材料中累积电荷的通用系统之一。电荷被测量为在放大器输出端观察到的电压信号,该信号从声学传感器获得输入。由于声学传感器和放大器的带宽有限,所有实验获得的信号都需要像反卷积之类的处理技术来估计原始信号(电荷)。由于所有实验信号中都存在噪声,因此反卷积成为一个优化问题。最佳反卷积涉及反卷积参数(也称为正则化参数)的最佳值的估计。此参数控制信号失真和噪声最小化之间的权衡。在文献中,提出了几种估计正则化参数最佳值的方法。但是,每种方法对参数的估计都不同。在本文中,研究了这些常规方法对估算空间电荷的适用性。还提出了一种简单但更好的估计方法,专用于空间电荷估计。还介绍了有趣的结果,并讨论了这些方法针对简单的频谱划分和高斯滤波的有效性。

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