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首页> 外文期刊>The Journal of the Acoustical Society of America >Stochastic matched-field localization of an acoustic source based on principles of Riemannian geometry
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Stochastic matched-field localization of an acoustic source based on principles of Riemannian geometry

机译:基于Riemannian几何原理的声学来源随机匹配场定位

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摘要

Passive localization of acoustic sources is treated within a geometric framework where non-Euclidean distance measures are computed between a cross-spectral density estimate of received data on a vertical array and a set of stochastic replica steering matrices, rather than traditional replica steering vectors. A processing scheme involving matrix-matrix comparisons where steering matrices, as functions of the replica source coordinates, naturally incorporate environmental variability or uncertainty provides a general framework for considering the acoustic inverse source problem in an ocean waveguide. Within this context a subset of matched-field processors is examined, based on recent advances in the application of non-Euclidean geometry to statistical classification of data feature clusters. The matrices are interpreted abstractly as points in a Riemannian manifold, and an appropriately defined distance measure between pairs of matrices on this manifold defines a matched-field processor for estimating source location. Acoustic simulations are performed for a waveguide comprising both a depth-dependent sound-speed profile perturbed by linear internal gravity waves and a depth-correlated surface noise field, providing an example of the viability of this approach to passive source localization in the presence of sound-speed variability.
机译:声源的被动定位在几何框架内处理,其中在垂直阵列上接收数据的横频密度估计和一组随机复制转向矩阵之间计算非欧几里德距离测量,而不是传统的副本转向矢量。涉及矩阵矩阵比较的处理方案,其中转向矩阵作为复制源坐标的功能,自然地纳入环境变异性或不确定性为考虑海洋波导中的声学逆源问题提供了一般框架。在此上下文中,基于应用非欧几里德几何体的统计分类的近期进步,检查匹配场处理器的子集。矩阵被抽象地解释为riemannian歧管中的点,并且该歧管上的矩阵对之间的适当定义的距离测量定义匹配场处理器,用于估计源位置。对波导进行声学模拟,包括由线性内部重力波和深度相关的表面噪声场扰动的深度依赖性声速曲线,提供了这种方法在声音存在下对被动源定位的可行性的示例 - 速度变异性。

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