时间相干函数的统计分析及其在嚎叫检测中的应用

C. Zheng, Yuxuan Ke, Renhua Peng, Xiaodong Li, Yi Zhou
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摘要

在光学中,时间相干函数(TCF)首先被定义为测量波与其延迟版本之间的相关性。现在,TCF是一个基本物理量,已经被应用到许多领域。据我们所知,到目前为止,TCF的统计性质还没有得到很好的研究。在定义了TCF之后,本文通过研究TCF的统计性质,给出了不同类型信号的概率密度函数(p.d.f.s),对TCF进行了新的认识。最后,TCF应用于检测啸叫频率,其中我们展示了如何以实际考虑的最佳方式选择延迟时间。在嚎叫检测中使用TCF有两个好处。首先,它的计算量非常低。其次,由于TCF是一种归一化测量,因此可以很容易地选择检测阈值。实验结果表明了TCF检测啸叫频率的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statistical analysis of temporal coherence function and its application in howling detection
Temporal coherence function (TCF) is first defined to measure the correlation between a wave and its delayed version in optics. Now, TCF is a basic physical quantity, that has already been applied to numerous fields. To the best of our knowledge, statistical properties of TCF have not been well studied until now. After defining TCF, this paper gives a new insight into it by studying its statistical properties, where its probability density functions (p.d.f.s) for different types of signals are given. Finally, TCF is applied to detect howling frequency, where we show how to choose the delay time in a best way for practical considerations. There are two benefits by using TCF in howling detection. First, its computation is extremely low. Second, the detection threshold can be easily chosen since TCF is a normalized measurement. Experimental results show the validity of TCF in detecting howling frequency.
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