Two-Step Inversion of Geoacoustic Parameters with Bottom Reverberation and Transmission Loss in the Deep Ocean
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Prior, M.K., Harrison, C.H.: Estimation of seabed reflection loss properties from direct blast pulse shape. J. Acoust. Soc. Am. 116(3), 1341–1344 (2004)
Yang, K., Ma, Y.: A geoacoustic inversion method based on bottom reflection signals. Acta Phys. Sin. 58(3), 1798–1805 (2009)
Guo, X., Yang, K., Ma, Y., Yang, Q.: Geoacoustic inversion based on modal dispersion curve for range-dependent environment. Chin. Phys. Lett. 32(12), 74–77 (2015)
Guo, X., Yang, K., Ma, Y.: A far distance wideband geoacoustic parameter inversion method based on a modal dispersion curve. Acta Phys. Sin. 64(17), 174302-1–174302-9 (2015)
Gerstoft, P., Ellis, D.D.: Application of multifrequency inversion methods to obtain seabed properties from broadband reverberation data. J. Acoust. Soc. Am. 100(4), 2665–2665 (1996)
Zhou, J., Guan, D., Shang, E., Luo, E.: Long-range reverberation and bottom scattering strength in shallow water. Chin. J. Acoust. 6(1), 151–153 (1982)
Yang, K., Ma, Y., Sun, C., Miller, J.H., Potty, G.R.: Multistep matched-field inversion for broad-band data from ASIAEX2001. IEEE J. Ocean. Eng. 29(4), 964–972 (2005)
Yang, K., Chapman, N.R., Ma, Y.: Estimating parameter uncertainties in matched field inversion by a neighborhood approximation algorithm. J. Acoust. Soc. Am. 121(2), 833–843 (2007)
Chapman, N.R.: Modeling ocean-bottom reflection loss measurements with the plane-wave reflection coefficient. J. Acoust. Soc. Am. 73(5), 1601–1607 (1983)
Dong, H., Chapman, N.R., Hannay, D.E., Dosso, S.E.: Estimation of seismic velocities of upper oceanic crust from ocean bottom reflection loss data. J. Acoust. Soc. Am. 127(4), 2182–2192 (2010)
Yang, K., Xiao, P., Duan, R., Ma, Y.: Bayesian inversion for geoacoustic parameters from ocean bottom reflection loss. J. Comput. Acoust. 25(3), 1750019-1–1750019-17 (2017)
Shuanglin, W., Li, Z., Qin, J.: Geoacoustic inversion for bottom parameters in the deep-water area of the South China Sea. Chin. Phys. Lett. 32(12), 70–73 (2015)
Guo, X., Yang, K., Ma, Y.: Geoacoustic inversion for bottom parameters via Bayesian theory in deep ocean. Chin. Phys. Lett. 34(03), 68–72 (2017)
Ellis, D.D., Crowe, D.V.: Bistatic reverberation calculations using a three-dimensional scattering function. J. Acoust. Soc. Am. 89(5), 2207–2214 (1991)
Jackson, D.R., Winebrenner, D.P., Ishimaru, A.: Application of the composite roughness model to high-frequency bottom backscattering. J. Acoust. Soc. Am. 79(5), 1410–1422 (1986)
Jackson, D.R., Briggs, K.B.: High-frequency bottom backscattering: roughness versus sediment volume scattering. J. Acoust. Soc. Am. 92(92), 962–977 (1992)
Williams, K.L., Jackson, D.R.: Bistatic bottom scattering: model, experiments, and model/data comparison. J. Acoust. Soc. Am. 103(1), 169–181 (1997)
Porter, M.B.: The Bellhop Manual and User’s Guide: Preliminary Draft, pp. 17–20. Heat, Light, and Sound Research, Inc, LaJolla (2011)
Argyris, J.H., Scharpf, D.W.: Finite elements in time and space. Nucl. Eng. Des. 10(4), 456–464 (1969)
Harrsion, C.H.: Fast bistatic signal-to-reverberation-ratio calculation. J. Comput. Acoust. 13(02), 317–340 (2008)
Locarnini, R.A., Mishonov, A.V., Antonov, J.I., Boyer, T.P., Garcia, H.E., Baranova, O.K., Zweng, M.M., Johnson, D.R.: World Ocean Altas 2009 Volume 1: Temperature. U.S. Government Printing Office, Washington DC (2009)
Antonov, J.I., Seidov, D., Boyer, T.P., Locarnini, R.A., Mishonov, A.V., Garcia, H.E.: World Ocean Altas 2009 Volume 1: Salinity. U.S. Government Printing Office, Washington DC (2009)
Zhang, X., Cheng, C., Liu, Y.: Acoustic propagation effect caused by subtropical mode water of northwestern Pacific. Acta Oceanol. Sin. 36(9), 94–102 (2014)
Hamilton, E.L., Bachman, R.T.: Sound velocity and related properties of marine sediments. J. Acoust. Soc. Am. 72(6), 1891–1904 (1982)
Holland, J.H.: Adaptation in natural and artificial systems: an introductory analysis with applications to biology, control, and artificial intelligence. Q. Rev. Biol. 6(2), 126–137 (1992)
Kennedy, J., Eberhart, R.: Particle swarm optimization. IEEE Int. Conf. Neural Netw. 4(8), 1942–1948 (1995)
Langdon, W.B., Poli, R.: Evolving problems to learn about particle swarm optimizers and other search algorithms. IEEE Trans. Evol. Comput. 11(5), 561–578 (2007)
Ling, S.H., Iu, H.H.C., Leung, F.H.F., Chan, K.Y.: Improved hybrid particle swarm optimized wavelet neural network for modeling the development of fluid dispensing for electronic packaging. IEEE Trans. Industr. Electron. 55(9), 3447–3460 (2008)
Hamilton, E.L.: Variations of density and porosity with depth in deep-sea sediments. J. Sediment. Res. 46(2), 280–300 (1976)
