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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Parametric modeling and estimation of acoustic sediment properties using a system identification approach
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Parametric modeling and estimation of acoustic sediment properties using a system identification approach

机译:使用系统识别方法对声沉积物特性进行参数建模和估计

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摘要

The acoustic properties of marine sediments are measured to obtain an acoustic signature of their mechanical characteristics. The proposed 1-D wave propagation model accounts for absorption and dispersion. Use is made of an inverse procedure based on a maximum likelihood estimator for obtaining a parametric identification of the sediments. Measurements are performed in the laboratory, in reflection and transmission modes, on prepared samples of natural sediments, at normal incidence, and using a controlled measurement environment in the frequency range of 300 to 700 kHz. The model validation is performed for a water layer, an ideal medium with little absorption and dispersion, and for a silty-clay layer. A comparison between the estimated and measured amplitude and phase characteristics for these two media indicates that the parametric identification of the silty-clay is successful. For both media, comparable differences, of 0.3 dB maximum for the amplitude and three degrees for the phase, are observed.
机译:测量海洋沉积物的声学特性以获得其机械特性的声学特征。提出的一维波传播模型考虑了吸收和色散。使用基于最大似然估计器的逆过程来获得沉积物的参数识别。在实验室中,以反射和透射模式,以法向入射,并在300至700 kHz频率范围内的受控测量环境下,对准备好的天然沉积物样品进行测量。对水层,吸收和分散性很小的理想介质以及粉质粘土层进行模型验证。对这两种介质的估计和测量的振幅和相位特性之间的比较表明,粉质粘土的参数识别是成功的。对于这两种介质,观察到可比较的差异,即幅度最大为0.3 dB,相位最大为3度。

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