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RECONSTRUCTION OF ONE DIMENSIONAL MULTI-LAYERED MEDIA BY USING A TIME DOMAIN SIGNAL FLOW GRAPH TECHNIQUE
引用本文:崔铁军,梁昌洪. RECONSTRUCTION OF ONE DIMENSIONAL MULTI-LAYERED MEDIA BY USING A TIME DOMAIN SIGNAL FLOW GRAPH TECHNIQUE[J]. 电子科学学刊(英文版), 1993, 10(2): 162-169. DOI: 10.1007/BF02684543
作者姓名:崔铁军  梁昌洪
作者单位:Xidian University Xi'an 710071,Xidian University,Xi'an 710071
摘    要:A novel inverse scattering method to reconstruct the permittivity profile of one-dimensional multi-layered media is proposed in this paper.Based on the equivalent network ofthe medium,a concept of time domain signal flow graph and its basic principles are introduced,from which the reflection coefficient of the medium in time domain can be shown to be a series ofDirac δ-functions(pulse responses).In terms of the pulse responses,we will reconstruct both thepermittivity and the thickness of each layer will accurately be reconstructed.Numerical examplesverify the applicability of this method


Reconstruction of one dimensional multilayered media by using a time domain signal flow graph technique
Cui Tiejun,Liang Changhong. Reconstruction of one dimensional multilayered media by using a time domain signal flow graph technique[J]. Journal of Electronics, 1993, 10(2): 162-169. DOI: 10.1007/BF02684543
Authors:Cui Tiejun  Liang Changhong
Affiliation:(1) Xidian University, 710071 Xi’an
Abstract:A novel inverse scattering method to reconstruct the permittivity profile of one-dimensional multi-layered media is proposed in this paper. Based on the equivalent network of the medium, a concept of time domain signal flow graph and its basic principles are introduced, from which the reflection coefficient of the medium in time domain can be shown to be a series of Dirac δ-functions(pulse responses). In terms of the pulse responses, we will reconstruct both the permittivity and the thickness of each layer will accurately be reconstructed. Numerical examples verify the applicability of this method.
Keywords:Multi-layered medium  Reconstruct  Permittivity profile  Inverse scattering  Time domain signal flow graph
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