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Original Article

Time domain microwave imaging for a metallic cylinder by using evolutionary algorithms

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Pages 3-12 | Accepted 17 Nov 2010, Published online: 12 Nov 2013

REFERENCES

  • Mudanyalı O, Yıldız S, Semerci O, Yapar A, Akduman I. A microwave tomographic approach for nondestructive testing of dielectric coated metallic surfaces. IEEE Geosci. Remote Sens. Lett., 2008, 5, 180–184.
  • Massa A, Pastorino M, Rosani A, Benedetti M. A microwave imaging method for NDE/NDT based on the SMW technique for the electromagnetic field prediction. IEEE Trans. Instrum. Measure., 2006, 55, 240–247.
  • Chiu CC, Sun CH, Fan YS. Shape reconstruction of 2D perfectly conducting cylinder targets using the particle swarm optimization. Imaging Sci. J, 2011, to be published.
  • El-Shenawee M, Dorn O, Moscoso M. An adjoint-field technique for shape reconstruction of 3-D penetrable object immersed in lossy medium. IEEE Trans. Antennas Propag., 2009, 57, 520–534.
  • Rubæk T, Meaney PM, Meincke P, Paulsen KD. Nonlinear microwave imaging for breast-cancer screening using Gauss–Newton’s method and the CGLS inversion algorithm. IEEE Trans. Antennas Propag., 2007, 55, 2320–2331.
  • Colton D, Paivarinta L. The uniqueness of a solution to an inverse scattering problem for electromagnetic waves. Arch. Ration. Mech. Anal., 1992, 119, 59–70.
  • Tikhonov AN, Arsenin VY. Solutions of Ill-Posed Problems, 1977 (Winston, Washington, DC).
  • Mikhnev VA, Vainikainen P. Two-step inverse scattering method for one-dimensional permittivity profiles. IEEE Trans. Antennas Propag., 2000, 48, 293–298.
  • Sun CH, Liu C-L, Chen KC, Chiu CC, Li CL, Tasi CC. Electromagnetic transverse electric wave inverse scattering of a partially immersed conductor by steady-state genetic algorithm. Electromagnetics. 2008, 28, 389–400.
  • Sun CH, Li CL, Chiu CC, Huang CH. Time domain image reconstruction for a buried 2D homogeneous dielectric cylinder using NU-SSGA. Res. Nondestruct. Eval., 2011, 22, 1–15.
  • Chien W, Sun CH, Chiu CC. Image reconstruction for a partially immersed imperfectly conducting cylinder by genetic algorithm. Int. J. Imaging Syst. Technol., 2009, 19, 299–305.
  • Sun CH, Chiu CC, Li CL. Time-domain inverse scattering of a two-dimensional metallic cylinder in slab medium using asynchronous particle swarm optimization. Prog. Electromagn. Res. M, 2010, 14, 85–100.
  • Sun CH, Chiu CC, Li CL, Huang CH. Time domain image reconstruction for homogenous dielectric objects by dynamic differential evolution. Electromagnetics, 2010, 30, 309–323.
  • Sun CH, Chiu CC, Chien W, Li CL. Application of FDTD and dynamic differential evolution for inverse scattering of a two-dimensional perfectly conducting cylinder in slab medium. J. Electron. Imaging, 2010, 19, 043016.
  • Donelli M, Franceschini G, Martini A, Massa A. An integrated multiscaling strategy based on a particle swarm algorithm for inverse scattering problems. IEEE Trans. Geosci. Remote Sens., 2006, 44, 298–312.
  • Semnani A, Kamyab M, Rekanos IT. Reconstruction of one-dimensional dielectric scatterers using differential evolution and particle swarm optimization. IEEE Geosci. Remote Sens. Lett., 2009, 6, 671–675.
  • Rekanos IT. Shape reconstruction of a perfectly conducting scatterer using differential evolution and particle swarm optimization. IEEE Trans. Geosci. Remote Sens., 2008, 46, 1967–1974.
  • Pastorino M. Stochastic optimization methods applied to microwave imaging: a review. IEEE Trans. Antennas Propag., 2007, 55, 538–548.
  • Rocca P, Benedetti M, Donelli M, Franceschini D, Massa A. Evolutionary optimization as applied to inverse scattering problems. Inverse Probl., 2009, 925, 1–42.
  • Chiu CC, Sun CH, Chang WL. Comparison of particle swarm optimization and asynchronous particle swarm optimization for inverse scattering of a two-dimensional perfectly conducting cylinder. Int. J. Appl. Electromagn. Mech., 2011, 35, 249–261.
  • Li CL, Chiu CC, Huang CH. Time domain inverse scattering for a homogenous dielectric cylinder by asynchronous particle swarm optimization. J. Test. Eval., 2011, 38, 102868.
  • Qing A. Dynamic differential evolution strategy and applications in electromagnetic inverse scattering problems. IEEE Trans. Geosci. Remote Sens., 2006, 44, 116–125.
  • Chevalier MW, Luebbers RJ, Cable VP. FDTD local grid with material traverse. IEEE Trans. Antennas Propag., 1997, 45, 411–421.
  • de Boor C. A Practical Guide to Splines, 1978 (Springer-Verlag, New York).
  • Storn R, Price K. ‘Differential evolution — a simple and efficient adaptive scheme for global optimization over continuous spaces’, Technical Report TR-95-012, International Computer Science Institute, Berkeley, CA, USA, 1995.
  • Clerc M. The swarm and the queen: towards a deterministic and adaptive particle swarm optimization. Proc. Cong. on Evolutionary computation: CEC’99, Washington, DC, USA, July 1999, IEEE, pp 1951–1957.
  • Huang T, Mohan AS. A hybrid boundary condition for robust particle swarm. optimization. IEEE Antennas Wireless Propag. Lett., 2005, 4, 112–117.

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