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Crosstalk analysis at near-end and far-end of the coupled transmission lines based on eigenvector decomposition

نویسنده:
نسترن سلیمانی
,
محمد علی جانی قادیکلایی
,
محمدحسن نشاطی
,
nastaran soleimani
,
Mohammad Alijani Ghadikolaei
,
Mohammad Hassan Neshati
سال
: 2019
چکیده: In this paper, a new analytical method is proposed to accurately estimate the near-end and far-end
crosstalk of a coupled Transmission Lines (TLs) based on eigenvector decomposition. For a non-homogenous two coupled lines, the related linear differential equations system (LDES) is derived for distributed voltage and current and then using matrix analysis, its four distinct eigenvalues and their associated eigenvectors are determined. It is shown that the two eigenvalues represent the self-propagation constant, while the other ones are linked to the mutual propagation constant of the coupled
lines. In addition to, for these lines a closed form expression for near-end and far-end crosstalk is presented. In special case of homogenous coupled lines, the LDES is also determined and it is shown that they provide two couples of eigenvalues. Using the concept of generalized eigenvalues, the solution of these systems is derived and a closed form formula is derived for crosstalk. In order to verify the accuracy of the proposed method a few types of coupled lines, including homogeneous or non-homogeneous
are investigated and the amount of crosstalk is estimated. The calculated crosstalk is presented and compared with those obtained by numerical investigation. It is shown that a good agreement is obtained between the calculated and measured results.
شناسه الکترونیک: 10.1016/j.aeue.2019.152944
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3368924
کلیدواژه(گان): Crosstalk,Coupled Microstrip Line,Transmission Line (TL)
کالکشن :
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    Crosstalk analysis at near-end and far-end of the coupled transmission lines based on eigenvector decomposition

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contributor authorنسترن سلیمانیen
contributor authorمحمد علی جانی قادیکلاییen
contributor authorمحمدحسن نشاطیen
contributor authornastaran soleimanifa
contributor authorMohammad Alijani Ghadikolaeifa
contributor authorMohammad Hassan Neshatifa
date accessioned2020-06-06T13:47:08Z
date available2020-06-06T13:47:08Z
date issued2019
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3368924?locale-attribute=fa
description abstractIn this paper, a new analytical method is proposed to accurately estimate the near-end and far-end
crosstalk of a coupled Transmission Lines (TLs) based on eigenvector decomposition. For a non-homogenous two coupled lines, the related linear differential equations system (LDES) is derived for distributed voltage and current and then using matrix analysis, its four distinct eigenvalues and their associated eigenvectors are determined. It is shown that the two eigenvalues represent the self-propagation constant, while the other ones are linked to the mutual propagation constant of the coupled
lines. In addition to, for these lines a closed form expression for near-end and far-end crosstalk is presented. In special case of homogenous coupled lines, the LDES is also determined and it is shown that they provide two couples of eigenvalues. Using the concept of generalized eigenvalues, the solution of these systems is derived and a closed form formula is derived for crosstalk. In order to verify the accuracy of the proposed method a few types of coupled lines, including homogeneous or non-homogeneous
are investigated and the amount of crosstalk is estimated. The calculated crosstalk is presented and compared with those obtained by numerical investigation. It is shown that a good agreement is obtained between the calculated and measured results.
en
languageEnglish
titleCrosstalk analysis at near-end and far-end of the coupled transmission lines based on eigenvector decompositionen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsCrosstalken
subject keywordsCoupled Microstrip Lineen
subject keywordsTransmission Line (TL)en
identifier doi10.1016/j.aeue.2019.152944
journal titleAEU - International Journal of Electronics and Communicationsfa
pages152944-152952
journal volume112
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1076332.html
identifier articleid1076332
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