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An analytic multiple frequency adjoint-based inversion algorithm for parabolic-type approximations in ocean acoustics

机译:海洋声学中抛物线型近似的基于解析多频伴随反演算法

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摘要

Inverse problems in ocean acoustics are generally solved by means of matched-field inversion in combination with meta-heuristic global search algorithms. Recently adjoint-based optimal nonlocal boundary control has been proposed as a possible complement or alternative to the traditional geoacoustic inversion methods, Especially for the assessment of a shallow water environment where field data are recorded on non-fully populated hydrophone arrays there is an inherent need for observation over a broad range of frequencies, as has been widely experimentally demonstrated, This article presents an analytic multiple frequency adjoint formulation for estimating an acoustically equivalent model of the seabed based on local impedance boundary conditions, It is intended as a benchmark solution for an extension of the approach to more sophisticated boundary conditions by means of automatic differentiation. The approach, coming from control theory, aims at inverting the impedance boundary condition along the water-sediment interface via measurements of the acoustic propagation in the water column, The impedance boundary condition thus plays the role of the control parameter of the complex pressure field in the waveguide, The developed multiple frequency adjoint method of optimal control provides an explicit representation of the gradient of the matched-field oriented cost function, and the article further proposes an analytical second-order adjoint formulation which permits the computation of the product of the Hessian matrix by a vector, By means of example inversion results the feasibility of the multi-frequency approach is discussed and the effect of a limited set of receiving locations is illustrated.
机译:通常通过匹配场反演结合元启发式全局搜索算法来解决海洋声学中的逆问题。最近提出了基于伴随的最优非局部边界控制作为对传统地声反演方法的一种可能的补充或替代,特别是对于评估现场数据记录在非人口密集的水听器阵列上的浅水环境,存在着固有的需求本文已经提出了一种解析多频伴随公式,用于根据局部阻抗边界条件估算海床的声学等效模型,旨在作为一个基准解决方案,用于在宽频率范围内进行观测。通过自动微分将方法扩展到更复杂的边界条件。该方法来自控制理论,其目的是通过测量水柱中的声传播来反演沿水-沉积物界面的阻抗边界条件,因此阻抗边界条件起着复杂压力场控制参数的作用。所开发的最优控制的多频伴生方法提供了对匹配场定向成本函数梯度的明确表示,并且本文还提出了一种分析二阶伴生公式,该公式可以计算Hessian的乘积通过一个矢量矩阵,通过示例反演结果,讨论了多频方法的可行性,并说明了有限的一组接收位置的影响。

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