Variability in higher order statistics of measured shallow-water shipping noise

L. A. Pflug, G. Ioup, J. Ioup, P. Jackson
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引用次数: 23

Abstract

Many underwater acoustic signal processing algorithms are designed for use in stationary and/or Gaussian noise. While these assumptions are often valid for applications in deep water ocean areas, they may not be appropriate for shallow water areas, especially in the presence of local shipping activity. Local shipping also produces spatial correlation in the noise and introduces additional complexity for multichannel processing. In this paper, two 30-minute sets of ambient ocean noise, recorded near the San Diego, California coast, are analyzed for stationarity and Gaussianity using the Kolmogorov-Smirnov test. Since processing algorithms based on higher order statistics often assume Gaussianity, time-dependent fluctuations in the third and fourth order cumulants are also analyzed. The analysis reveals significant variability in the time lengths of stationary periods, and episodic periods of nonGaussianity that last for up to five minutes. Statistical fluctuations appear predominantly in the second and fourth order cumulants rather than the third order cumulant. The shipping noise is also shown to be correlated between pairs of hydrophones with the level of correlation varying over time and the correlation ranging from positive to negative with increasing channel separation.
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测量的浅水船舶噪声的高阶统计量的变异性
许多水声信号处理算法被设计用于平稳噪声和/或高斯噪声。虽然这些假设通常适用于深水海洋地区,但它们可能不适用于浅水区,特别是在当地有航运活动的情况下。局部航运也在噪声中产生空间相关性,并为多通道处理带来额外的复杂性。本文使用Kolmogorov-Smirnov检验分析了加利福尼亚海岸圣地亚哥附近记录的两组30分钟的环境海洋噪声的平稳性和高斯性。由于基于高阶统计量的处理算法通常假设高斯性,因此还分析了三阶和四阶累积量的随时间波动。分析显示,在平稳期的时间长度上存在显著的差异,而持续时间长达5分钟的非均匀性的间歇期也存在显著的差异。统计波动主要出现在二阶和四阶累积量而不是三阶累积量中。船舶噪声也显示出对水听器之间的相关,相关水平随时间而变化,相关范围从正到负,随着通道间隔的增加。
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