The Comparison of Bottom Parameter Inversion in Geoacoustic Space and in (P,Q) Space

Z. D. Zhao, E. Shang, D. Rouseff
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引用次数: 3

Abstract

The acoustical properties of the sea-bottom can be described by geoacoustic (GA) parameters or by reflective parameters: P (phase shift parameter) and Q (absorption parameter). Both in GA space and in (P, Q) space, the parameters are difficult to measure and are instead estimated by inversion methods such as matched field inversion (MFI). In GA space, an assumed model is needed to mount the GA parameters for inverting (model dependent), while the reflective parameters (P, Q) are model-free. In this paper, the efficiency and quality of matched field processing (MFP) in GA space as well as in (P,Q) space are compared and the potential possibility of bottom sound-speed-profile estimation is discussed.
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地声空间和(P,Q)空间底部参数反演的比较
海底的声学特性可以用地声(GA)参数或反射参数P(相移参数)和Q(吸收参数)来描述。无论是在GA空间还是在(P, Q)空间中,参数都难以测量,只能通过匹配场反演(MFI)等反演方法进行估计。在遗传算法空间中,需要一个假设的模型来安装遗传算法参数进行反演(模型依赖),而反射参数(P, Q)是无模型的。本文比较了匹配场处理(MFP)在GA空间和(P,Q)空间中的效率和质量,并讨论了底部声速剖面估计的潜在可能性。
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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
0
审稿时长
4.5 months
期刊介绍: Currently known as Journal of Theoretical and Computational Acoustics (JTCA).The aim of this journal is to provide an international forum for the dissemination of the state-of-the-art information in the field of Computational Acoustics. Topics covered by this journal include research and tutorial contributions in OCEAN ACOUSTICS (a subject of active research in relation with sonar detection and the design of noiseless ships), SEISMO-ACOUSTICS (of concern to earthquake science and engineering, and also to those doing underground prospection like searching for petroleum), AEROACOUSTICS (which includes the analysis of noise created by aircraft), COMPUTATIONAL METHODS, and SUPERCOMPUTING. In addition to the traditional issues and problems in computational methods, the journal also considers theoretical research acoustics papers which lead to large-scale scientific computations. The journal strives to be flexible in the type of high quality papers it publishes and their format. Equally desirable are Full papers, which should be complete and relatively self-contained original contributions with an introduction that can be understood by the broad computational acoustics community. Both rigorous and heuristic styles are acceptable. Of particular interest are papers about new areas of research in which other than strictly computational arguments may be important in establishing a basis for further developments. Tutorial review papers, covering some of the important issues in Computational Mathematical Methods, Scientific Computing, and their applications. Short notes, which present specific new results and techniques in a brief communication. The journal will occasionally publish significant contributions which are larger than the usual format for regular papers. Special issues which report results of high quality workshops in related areas and monographs of significant contributions in the Series of Computational Acoustics will also be published.
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