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Analysis of the Light Emission Signals Based on Autocorrelation Function Calculation

机译:基于自相关函数计算的发光信号分析

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Autocorrelation function is employed to process the light emission signals obtained by PMT, which present the microdischarges igniting in dielectric barrier discharge system. In experiments, signals of different sizes area are measured. With increasing measured size, the signals changes and the number of microdischarges increase. However, the primary signals are coarse and disorder in time series, from which it can not be seen any influence of this microdischarge on the following one. To find the correlation between microdischarges at this time and the following ones, autocorrelation functions of the primary signals are calculated. It is found that with smaller measured area size, the number of microdischarges is smaller and the correlation coefficient fluctuates around 0. This indicates that the microdischarges at this time and the following one are weak correlated. With the measured area size increasing, i.e. the collective microdischarges number increasing, the autocorrelation coefficient increases, which indicates that the correlation degree between the microdischarges at this time and the following ones increases. As the collection of microdischarges in the discharge region, the current presents quasiperiodic property. The results show that the autocorrelation function processing is very useful to investigation on discharge mechanism.
机译:利用自相关函数来处理由PMT获得的发光信号,该信号表示介电势垒放电系统中的微放电被点燃。在实验中,测量了不同大小区域的信号。随着测量尺寸的增加,信号会发生变化,微放电的数量也会增加。然而,主要信号在时间序列上是粗糙且无序的,从中看不到这种微放电对下一个信号的任何影响。为了找到此时的微放电与随后的微放电之间的相关性,需要计算一次信号的自相关函数。发现在较小的测量面积的情况下,微放电的数量较小并且相关系数在0附近波动。这表明此时的微放电与随后的微放电的相关性较弱。随着测量面积的增加,即集体微放电数量的增加,自相关系数增加,这表明此时的微放电与随后的微放电之间的相关度增加。随着放电区域中微放电的收集,电流呈现准周期特性。结果表明,自相关函数处理对放电机理的研究非常有用。

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