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1
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0034227175
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Novel acceleration algorithm for the computation of scattering from two-dimensional large-scale perfectly conducting random rough surfaces with the forward-backward method
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Torrungrueng, D., Chou, H.-T., and Johnson, J. T., 2000. Novel acceleration algorithm for the computation of scattering from two-dimensional large-scale perfectly conducting random rough surfaces with the forward-backward method. IEEE Trans. Geosci. Rem. Sens., 38:1656–1668.
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Torrungrueng, D.1
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The forward-backward method with a novel acceleration algorithm (FB/NSA) for the computation of scattering from two-dimensional large-scaleimpedance random rough surfaces
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Torrungrueng, D., and Johnson, J. T., 2001. The forward-backward method with a novel acceleration algorithm (FB/NSA) for the computation of scattering from two-dimensional large-scaleimpedance random rough surfaces. Micro. Opt. Tech. Lett., 29:232–236.
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A novel acceleration algorithm for the computation of scattering from rough surfaces with the forward-backward method
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Chou, H. T., and Johnson, J. T., 1998. A novel acceleration algorithm for the computation of scattering from rough surfaces with the forward-backward method. Radio Science, 33 (No. 5):1277–1287.
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Some issues related to the novel spectral acceleration (NSA) method for the fast computation of radiation/scattering from one-dimensional extremely large-scale quasi-planar structures
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submitted to
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Torrungrueng, D., Johnson, J. T., and Chou, H.-T., Some issues related to the novel spectral acceleration (NSA) method for the fast computation of radiation/scattering from one-dimensional extremely large-scale quasi-planar structures. Radio Science., submitted to
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Backscattering enhancement of electromagnetic waves from two-dimensional perfectly conducting random rough surfaces: A comparison of Monte Carlo simulations with experimental data
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Johnson, J. T., Tsang, L., Shin, R. T., Pak, K., Chan, C. H., Ishimaru, A., and Kuga, Y., 1996. Backscattering enhancement of electromagnetic waves from two-dimensional perfectly conducting random rough surfaces:A comparison of Monte Carlo simulations with experimental data. IEEE Trans. Antennas Prop., 44:748–756.
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A numerical study of ocean polarimetric thermal emission
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Johnson, J. T., Shin, R. T., Kong, J. A., Tsang, L., and Pak, K., 1999. A numerical study of ocean polarimetric thermal emission. IEEE Trans. Geosci. Rem. Sens., 37:8–20.
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Numerical simulations and backscattering enhancement of electromagnetic waves from two-dimensional dielectric random rough surfaces with the sparsematrix canonical grid method
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Pak, K., Tsang, L., and Johnson, J. T., 1997. Numerical simulations and backscattering enhancement of electromagnetic waves from two-dimensional dielectric random rough surfaces with the sparsematrix canonical grid method. J. Opt. Soc. Am. A, 14:1515–1529.
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