Kniffin Gabriel P, Boyle John K, Zurk Lisa M, Siderius Martin
Department of Electrical and Computer Engineering, Northwest Electromagnetics and Acoustics Research Laboratory (NEAR-Lab), Portland State University, Portland, Oregon 97207, USA.
J Acoust Soc Am. 2016 Jan;139(1):418-25. doi: 10.1121/1.4939740.
A recent publication by McCargar and Zurk [(2013). J. Acoust. Soc. Am. 133(4), EL320-EL325] introduced a modified Fourier transform-based method for passive source depth estimation using vertical line arrays deployed below the critical depth in the deep ocean. This method utilizes the depth-dependent modulation caused by the interference between the direct and surface-reflected acoustic arrivals, the observation of which is enhanced by propagation through the reliable acoustic path. However, neither the performance of this method nor its limits of applicability have yet been thoroughly investigated. This paper addresses both of these issues; the first by identifying and analyzing the factors that influence the resolution and ambiguity in the transform-based depth estimate; the second by introducing another, much simpler depth estimation method, which is used to determine the target trajectories required for observation of the interference pattern and the array requirements for accurate depth estimation.
麦卡加和祖尔克最近发表的一篇论文[(2013年)。《美国声学学会杂志》133(4),EL320 - EL325]介绍了一种基于修正傅里叶变换的方法,用于使用部署在深海临界深度以下的垂直线阵列进行无源声源深度估计。该方法利用了直达声和海面反射声到达之间的干涉所引起的与深度相关的调制,通过可靠的声路径传播可增强对此干涉的观测。然而,该方法的性能及其适用范围尚未得到彻底研究。本文解决了这两个问题;第一个问题是通过识别和分析影响基于变换的深度估计中的分辨率和模糊度的因素来解决;第二个问题是通过引入另一种更简单的深度估计方法来解决,该方法用于确定观测干涉图样所需的目标轨迹以及精确深度估计所需的阵列要求。