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Articles

Dielectric objects reconstruction by combining subspace-based algorithm and randomly global optimization algorithm

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Pages 77-91 | Received 25 Apr 2017, Accepted 12 Aug 2017, Published online: 31 Aug 2017

References

  • Wolf E. Three-dimensional structure determination of semi-transparent objects from holographic data. Opt Commun. 1969 Sep–Oct;1:153–156.10.1016/0030-4018(69)90052-2
  • Persico R, Bernini R, Soldovieri F. The role of the measurement configuration in inverse scattering from buried objects under the Born approximation. IEEE Trans Antennas Propag. 2005 Jun;53(6):1875–1887.10.1109/TAP.2005.848468
  • Gurbuz T, Aslanyurek B, Karabulut EP, et al. An efficient nonlinear imaging approach for dielectric objects buried under a rough surface. IEEE Trans Geosci Remote Sens. 2014 May;52(5):3013–3022.10.1109/TGRS.2013.2268662
  • Wildman RA, Weile DS. Greedy search and a hybrid local optimization/genetic algorithm for tree-based inverse scattering. Microwave Opt Technol Lett. 2008 Mar;50(3):822–825.10.1002/(ISSN)1098-2760
  • Saeedfar A, Barkeshli K. Shape reconstruction of three-dimensional conducting curved plates using physical optics, NURBS modeling, and genetic algorithm. IEEE Trans Antennas Propag. 2006 Sep;54(9):2497–2507.10.1109/TAP.2006.880662
  • Semnani A, Rekanos IT, Kamyab M, et al. Two-dimensional microwave imaging based on hybrid scatterer representation and differential evolution. IEEE Trans Antennas Propag. 2010 Oct;58(10):3289–3298.
  • Dehmollaian M. Through-wall shape reconstruction and wall parameters estimation using differential evolution. IEEE Geosci Remote Sens Lett. 2011;8:201–205.10.1109/LGRS.2010.2056912
  • Semnani A, Kamyab M. An enhanced hybrid method for solving inverse scattering problems. IEEE Trans Magn. 2009 Mar;45(3):1534–1537.10.1109/TMAG.2009.2012735
  • Liu Y, Zhao Z, Yang Y, et al. A frequency-hopping subspace-based optimization method for reconstruction of 2-D large uniaxial anisotropic scatterers with TE illumination. IEEE Trans Geosci Remote Sens. 2016 Oct;54(10):6091–6099.
  • Zhong Y, Chen X. Twofold subspace-based optimization method for solving inverse scattering problems. Inverse Prob. 2009;25:11 pages. ID: 085003
  • Chen X. Subspace-based optimization method for solving inverse-scattering problems. IEEE Trans Geosci Remote Sens. 2010;48:42–49.10.1109/TGRS.2009.2025122
  • Zhong Y, Chen X, Agarwal K. An improved subspace-based optimization method and its implementation in solving three-dimensional inverse problems. IEEE Trans Geosci Remote Sens. 2010;48:3763–3768.10.1109/TGRS.2010.2049744
  • Xu K, Zhong Y, Song R, et al. Multiplicative-regularized FFT twofold subspace-based optimization method for inverse scattering problems. IEEE Trans Geosci Remote Sens. 2015;53:841–850.
  • Liu Y, Zhao Z, Yang Y, et al. A frequency-hopping subspace-based optimization method for reconstruction of 2-D large uniaxial anisotropic scatterers with TE illumination. IEEE Trans Geosci Remote Sens. 2016 Oct;54(10):6091–6099.
  • Press WH, Teukolsky SA, Vetterling WT, et al. Numerical recipes in Fortran. 2nd ed. New York (NY): The Press Syndicate of the University of Cambridge; 1992.
  • Goldberg DE. Genetic algorithm in search, optimization and machine learning. Boston (MA): Addison Wesley; 1989.
  • Michael Johnson J, Rahmat-Samii VY. Genetic algorithms in engineering electromagnetics. IEEE Antennas Propag Mag. 1997 Aug;39(4):7–21.10.1109/74.632992
  • Vasconcelos JA, Ramirez JA, Takahashi RHC, et al. Improvements in genetic algorithms. IEEE Trans Magn. 2001 Sep;37(5):3414–3417.10.1109/20.952626
  • Goudos SK, Siakavara K, Samaras T, et al. Self-adaptive differential evolution applied to real-valued antenna and microwave design problems. IEEE Trans Antennas Propag. 2011 Apr;59(4):1286–1298.10.1109/TAP.2011.2109678
  • Sun CH, Chiu CC. Inverse scattering of dielectric cylindrical target using dynamic differential evolution and self-adaptive dynamic differential evolution. Int J RF Microwave Comput Aided Eng. 2013 Sep;23(5):579–585.10.1002/mmce.v23.5
  • Chiu CC, Sun CH, Li CL, et al. Comparative study of some population-based optimization algorithms on inverse scattering of a two-dimensional perfectly conducting cylinder in dielectric slab medium. IEEE Trans Geosci Remote Sens. 2013 Apr;51:2302–2315.10.1109/TGRS.2012.2208756
  • Boutami S, Fall M. Calculation of the free-space periodic Green's function using equivalent finite array. IEEE Trans Antennas Propag. 2012;60:4725–4731.10.1109/TAP.2012.2210179
  • Richmond JH. Scattering by a dielectric cylinder of arbitrary cross section shape. IEEE Trans Antennas Propag. 1965 May ;13:334–341.10.1109/TAP.1965.1138427
  • Harrmgton RF. Field computation by moment method. New York (NY): Macmillan; 1968.
  • Ishimaru A. Electromagnetic wave propagation, radiation and scattering. Englewood Cliffs (NJ): Prentice-Hall; 1991.
  • Habashy TM, Oristaglio ML, de Hoop AT. Simultaneous nonlinear reconstruction of two-dimensional permittivity and conductivity. Radio Sci. 1994 Jul–Aug;29:1101–1118.10.1029/93RS03448
  • Brest J, Greiner S, Boskovic B, et al. Self-adapting control parameters in differential evolution: a comparative study on numerical benchmark problems. IEEE Trans Evol Comput. 2006 Dec;10(6):646–657.10.1109/TEVC.2006.872133

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