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作 者:S M Ngounou F B Pelap
机构地区:[1]Unite de Recherche de Mecanique et de Modelisation des Systèmes Physiques(UR-2 MSP),Faculte des Sciences,Universite de Dschang,BP 69 Dschang,Cameroun [2]Unite de Recherche de Matiere Condensee d'Electronique et de Traitement du Signal(UR-MACETS),Faculte des Sciences,Universite de Dschang,BP 67 Dschang,Cameroun
出 处:《Chinese Physics B》2020年第4期179-189,共11页中国物理B(英文版)
摘 要:The dynamics of modulated waves in a nonlinear bi-inductance transmission line with dissipative elements are examined.We show the existence of two frequency modes and carry out intensive investigations on the low frequency mode.Thanks to the multiple scales method,the behavior of these waves is investigated and the dissipative effects are analyzed.It appears that the dissipation coefficient increases with the carrier wave frequency.In the continuous approximation,we derive that the propagation of these waves is governed by the complex Ginzburg-Landau equation instead of the Korteweg-de-Vries equation as previously established.Asymptotic studies of the dynamics of plane waves in the line reveal the existence of three additional regions in the dispersion curve where the modulational phenomenon is observed.In the low frequency mode,we demonstrate that the network allows the propagation of dark and bright solitons.Numerical findings are in perfect agreement with the analytical predictions.
关 键 词:DISSIPATIVE bi-inductance network low frequency mode CONTINUOUS approximation complex GINZBURG-LANDAU equation
分 类 号:TM75[电气工程—电力系统及自动化]
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