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  • Breast cancer detection has become one of the most emergent tasks these days. A microwave imaging for the breast cancer detection shows several advantages compared to the conventional X-ray mammography. If the test is carried out using the microwave imaging system a person is not exposed to a high dose of the radiation; the X-ray method is less sensitive to radio-graphically dense tissues, etc. A scattering solver is the most important part of the microwave imaging system. The scattering from an unknown object that exhibits a contrast in electric permittivity and conductivity has to be analyzed. There are several approaches for a numerical solution of the problem, e.g. Integral Equations (IE), Finite Differences (FD), Finite Elements (FE) and other methods.In the paper, the formulation of the scattering problem using IE, FD and FE methods is given. These methods are compared from the viewpoint of their suitability to model a scattering problem. Accuracy, computational time, and memory demands are the
  • Breast cancer detection has become one of the most emergent tasks these days. A microwave imaging for the breast cancer detection shows several advantages compared to the conventional X-ray mammography. If the test is carried out using the microwave imaging system a person is not exposed to a high dose of the radiation; the X-ray method is less sensitive to radio-graphically dense tissues, etc. A scattering solver is the most important part of the microwave imaging system. The scattering from an unknown object that exhibits a contrast in electric permittivity and conductivity has to be analyzed. There are several approaches for a numerical solution of the problem, e.g. Integral Equations (IE), Finite Differences (FD), Finite Elements (FE) and other methods.In the paper, the formulation of the scattering problem using IE, FD and FE methods is given. These methods are compared from the viewpoint of their suitability to model a scattering problem. Accuracy, computational time, and memory demands are the (en)
Title
  • Microwave Imaging: Comparison of Direct Scattering Problem Solvers
  • Microwave Imaging: Comparison of Direct Scattering Problem Solvers (en)
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  • Microwave Imaging: Comparison of Direct Scattering Problem Solvers
  • Microwave Imaging: Comparison of Direct Scattering Problem Solvers (en)
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  • RIV/00216305:26220/13:PU103337!RIV15-MSM-26220___
http://linked.open...avai/riv/aktivita
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  • P(ED2.1.00/03.0072), P(EE2.3.20.0007), P(GAP102/12/1274), S
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  • 88257
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  • RIV/00216305:26220/13:PU103337
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  • microwave imaging, finite elements, finite differences, integral equations, (en)
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  • [AA189024DEC0]
http://linked.open...v/mistoKonaniAkce
  • Pardubice
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  • Studentska 95 532 10 Pardubice, Czech Republic
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  • 13th Conference on Microwave Techniques COMITE 2013
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  • Kadlec, Petr
  • Raida, Zbyněk
  • Cigánek, Jan
  • Wiktor, Michal
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http://linked.open.../riv/zahajeniAkce
number of pages
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  • Univerzita Pardubice
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  • 978-1-4673-5513-1
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  • 26220
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