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Titlebook: Inverse Problems in Underwater Acoustics; Michael I. Taroudakis,George N. Makrakis Book 2001 Springer Science+Business Media New York 2001

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书目名称Inverse Problems in Underwater Acoustics
编辑Michael I. Taroudakis,George N. Makrakis
视频video
图书封面Titlebook: Inverse Problems in Underwater Acoustics;  Michael I. Taroudakis,George N. Makrakis Book 2001 Springer Science+Business Media New York 2001
描述Inverse problems have a long history in acoustics, optics, electromagnetics and geophysics, but only recently have the signals provided by ocean acoustic sensors become numerous and sophisticated enough to allow for realistic identification of the ocean parameters. Acoustic signals propagating for long distances in the water column and reflections of underwater sound from the ocean boundaries provide novel problems of interpretation and inversion..The chapters in this volume discuss some of the contemporary aspects of these problems. They provide recent and useful results for bottom recognition, inverse scattering in acoustic wave guides, and ocean acoustic tomography, as well as a discussion of some of the new algorithms, such as those related to matched-field processing, that have recently been used for inverting experimental data. Each chapter is by a noted expert in the field and represents the state of the art. The chapters have all been edited to provide a uniform format and level of presentation.
出版日期Book 2001
关键词Arctic Ocean; Boundary value problem; Ocean; acoustics; geophysics; inverse problem; optics; sound; wave
版次1
doihttps://doi.org/10.1007/978-1-4757-3520-8
isbn_softcover978-1-4419-2920-4
isbn_ebook978-1-4757-3520-8
copyrightSpringer Science+Business Media New York 2001
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Freeze Bath Inversion for Estimation of Geoacoustic Parameters,lgorithm that provides a representation of the distribution of models that fit the data well. The efficiency of the search is improved by reparameterizing, using new parameters based on the covariance of the sampled models. The method is applied to synthetic data that simulate the environment of the
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Regularized Inversion for Towed-Array Shape Estimation, spurious fluctuations (roughness) in the solution. Finally, the effect of the survey geometry is investigated by defining a mean sensor-position error measure based on the a posteriori uncertainty of the inversion. The optimal source configuration is determined by minimizing this error with respect
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Mode-Coupling Effects in Acoustic Thermometry of the Arctic Ocean,continental slope, the deep-water Arctic Basin, and the Canadian continental slope. Year-round acoustic measurements are currently being made on this path as part of the Arctic Climate Observations using Underwater Sound (ACOUS) experiment that started in October 1998. The results of modeling show t
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