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A Comparative Analysis of the Latest Statistical Characterization Trends of Narrowband Broadband Frequency Spectrum of Deep Sea Ambient Noise Using Monte Carlo Simulation Method

机译:蒙特卡罗模拟法对深海环境噪声窄带和宽带频谱最新统计特征趋势的比较分析。

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Ocean seems to be silent but actually it is not so. It is always enriched with a background noise known as ambient noise caused by wind, heat, turbulence and some other activities and natural phenomenon. This noise poses considerable hindrances in undersea acoustic communication which is so essential for Oceanographic Monitoring. Oceanographic monitoring covers numerous undersea applications like oceanographic data collection, pollution monitoring, offshore undersea exploration, detect climate changes, seismic monitoring, disaster prevention etc. Exploring the latest statistical characterization trends of Indian Ocean ambient noise in highly spatiotemporal sea environment, we put forward a different approach based on Monte-Carlo simulation method to explore, analyze and verify the empirical data / observations of deep sea ambient noise against its well-known standard Gaussian model in both narrowband and broadband frequency spectrums. Results of variances reveal that the actual ambient noise observations are in very close agreement with the predicted standard Gaussian model in most of the selected broadband frequency spectrums except the narrowband frequency spectrum in which the data summary statistics is numerically found to be non-symmetric. This exception in results has a profound impact on the understanding and behavioral modeling of deep sea ambient noise which is to be analyzed specifically in the narrowband frequency spectrum.
机译:海洋似乎是沉默的,但实际上并非如此。它总是富含由风,热,湍流以及其他一些活动和自然现象引起的背景噪声,称为环境噪声。这种噪声在海底声波通信中构成了很大的障碍,这对于海洋学监测至关重要。海洋学监测涵盖了海底应用,如海洋学数据收集,污染监测,近海海底勘探,气候变化监测,地震监测,防灾等。探索高度时空海洋环境中印度洋环境噪声的最新统计特征趋势,我们提出了基于蒙特卡洛模拟方法的不同方法,以其众所周知的标准高斯模型在窄带和宽带频谱中探索,分析和验证深海环境噪声的经验数据/观测结果。方差的结果表明,在大多数选定的宽带频谱中,实际的环境噪声观测值与预测的标准高斯模型非常接近,除了在窄带频谱中在数值上发现数据摘要统计数据是不对称的之外。结果的例外情况对深海环境噪声的理解和行为建模产生了深远的影响,这将在窄带频谱中进行专门分析。

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