Bender Christopher M, Ballard Megan S, Wilson Preston S
Applied Research Laboratories, The University of Texas at Austin, P.O. Box 8029, Austin, Texas 78713-8029.
Department of Mechanical Engineering and Applied Research Laboratories, The University of Texas at Austin, P.O. Box 8029, Austin, Texas 78713-8029.
J Acoust Soc Am. 2014 Jun;135(6):3295-304. doi: 10.1121/1.4874602.
The overall goal of this work is to quantify the effects of environmental variability and spatial sampling on the accuracy and uncertainty of estimates of the three-dimensional ocean sound-speed field. In this work, ocean sound speed estimates are obtained with acoustic data measured by a sparse autonomous observing system using a perturbative inversion scheme [Rajan, Lynch, and Frisk, J. Acoust. Soc. Am. 82, 998-1017 (1987)]. The vertical and horizontal resolution of the solution depends on the bandwidth of acoustic data and on the quantity of sources and receivers, respectively. Thus, for a simple, range-independent ocean sound speed profile, a single source-receiver pair is sufficient to estimate the water-column sound-speed field. On the other hand, an environment with significant variability may not be fully characterized by a large number of sources and receivers, resulting in uncertainty in the solution. This work explores the interrelated effects of environmental variability and spatial sampling on the accuracy and uncertainty of the inversion solution though a set of case studies. Synthetic data representative of the ocean variability on the New Jersey shelf are used.
这项工作的总体目标是量化环境变异性和空间采样对三维海洋声速场估计的准确性和不确定性的影响。在这项工作中,海洋声速估计是通过一个稀疏自主观测系统测量的声学数据,采用微扰反演方案得到的[拉詹、林奇和弗里斯克,《美国声学学会杂志》82,998 - 1017(1987)]。解的垂直和水平分辨率分别取决于声学数据的带宽以及源和接收器的数量。因此,对于一个简单的、与距离无关的海洋声速剖面,一对源 - 接收器就足以估计水柱声速场。另一方面,一个具有显著变异性的环境可能无法通过大量的源和接收器得到充分表征,从而导致解的不确定性。这项工作通过一系列案例研究,探讨了环境变异性和空间采样对反演解的准确性和不确定性的相互关联影响。使用了代表新泽西海岸海洋变异性的合成数据。