000 03821nam a2200493 i 4500
001 8371439
003 IEEE
005 20220712210002.0
006 m o d
007 cr |n|||||||||
008 180809s2018 mau ob 001 eng d
010 _z 2017045207 (print)
020 _a9781119311997
_qelectronic
020 _z9781119311980
_qcloth
024 7 _a10.1002/9781119311997
_2doi
035 _a(CaBNVSL)mat08371439
035 _a(IDAMS)0b00006487da4e5a
040 _aCaBNVSL
_beng
_erda
_cCaBNVSL
_dCaBNVSL
050 4 _aQC665.S3
_bC473 2018eb
082 0 0 _a530.14/1
_223
100 1 _aChen, Xudong,
_d1976-
_eauthor.
_929305
245 1 0 _aComputational methods for electromagnetic inverse scattering /
_cby Xudong Chen.
264 1 _aSingapore ;
_aHoboken, NJ :
_bJohn Wiley & Sons,
_c2018.
264 2 _a[Piscataqay, New Jersey] :
_bIEEE Xplore,
_c[2018]
300 _a1 PDF (328 pages).
336 _atext
_2rdacontent
337 _aelectronic
_2isbdmedia
338 _aonline resource
_2rdacarrier
500 _aIncludes index.
505 0 _aFundamentals of electromagnetic wave theory -- Time reversal imaging -- Inverse scattering problems of small scatterers -- Linear sampling method -- Reconstructing dielectric scatterers -- Reconstructing perfect electric conductors -- Inversion for phaseless data -- Inversion with an inhomogeneous background medium -- Resolution of computational imaging.
506 _aRestricted to subscribers or individual electronic text purchasers.
520 _aComputational Methods for Electromagnetic Inverse Scattering Xudong Chen, National University of Singapore, Singapore This book offers a comprehensive and updated overview of the theory, algorithms and applications of electromagnetic inverse scattering problems. Fundamental theories including mathematical derivation and physical insights of both forward and inverse electromagnetic scattering will be emphasized, and 2-dimentional and 3-dimensional problems covered. Readers will be introduced to reconstruction algorithms for both small-size and large-size scatterers, as well as qualitative and quantitative reconstruction algorithms. Inverse scattering taking into account different boundary conditions are also discussed before imaging resolution and applications are tackled from a new perspective. . Offers important advances in electromagnetic inverse scattering grounded in fundamental theory, algorithms and practical engineering applications. Covers the latest, most relevant inverse scattering techniques like signal subspace methods, time reversal, linear sampling, qualitative methods, compressive sensing, and noniterative methods. Emphasizes theory, mathematical derivation and physical insights of various inverse scattering problems Written by a leading expert in the field, Numerical Methods for Electromagnetic Inverse Scattering is an essential reference for researchers in electrical engineering, physics and applied mathematics. Graduate students and practicing engineers specializing in areas like remote sensing, military surveillance, biomedical diagnosis, nondestructive testing/evaluation, and oil exploration would also find it an insightful guide.
530 _aAlso available in print.
538 _aMode of access: World Wide Web
588 _aDescription based on PDF viewed 08/09/2018.
650 0 _aElectromagnetic waves
_xScattering
_xMathematical models.
_96156
650 0 _aScattering (Physics)
_xMathematics.
_96157
650 0 _aInverse scattering transform.
_96158
655 0 _aElectronic books.
_93294
710 2 _aIEEE Xplore (Online Service),
_edistributor.
_929306
710 2 _aWiley,
_epublisher.
_929307
856 4 2 _3Abstract with links to resource
_uhttps://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=8371439
942 _cEBK
999 _c74553
_d74553