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    block this user An-Ping Li

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    Beijing 100085, P.R.China

    A New Family Of Exponential Infinite Elements For The Analysis Of Electromagnetic Waveguides

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    . In this paper the Finite Element Method is employed for the analysis of electromagnetic lossless waveguides. The curl-curl equation, deduced from Maxwell equations, is solved for the electric field. We have studied the appearance of parasitic solutions and formulated a sufficient condition for their elimination which puts a contraint on the Finite Element spaces for the approximation of the field components. A new family of discontinuous exponential infinite elements is proposed for the analysis of open waveguides: they are employed together with edge elements and a non-linear eigenvalue problem is deduced. We have presented numerical results in order to prove the validity of such infinite elements versus the Virtual Boundary Technique. 1 Introduction The propagation of electromagnetic power at distance without considerable loss and attenuation is one of the main tasks of modern communication systems. In electromagnetic waveguides the power confinement is achieved either by enclosin...

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    Title : A New Family Of Exponential Infinite Elements For The Analysis Of Electromagnetic Waveguides
    Abstract : . In this paper the Finite Element Method is employed for the analysis of electromagnetic lossless waveguides. The curl-curl equation, deduced from Maxwell equations, is solved for the electric field. We have studied the appearance of parasitic solutions and formulated a sufficient condition for their elimination which puts a contraint on the Finite Element spaces for the approximation of the field components. A new family of discontinuous exponential infinite elements is proposed for the analysis of open waveguides: they are employed together with edge elements and a non-linear eigenvalue problem is deduced. We have presented numerical results in order to prove the validity of such infinite elements versus the Virtual Boundary Technique. 1 Introduction The propagation of electromagnetic power at distance without considerable loss and attenuation is one of the main tasks of modern communication systems. In electromagnetic waveguides the power confinement is achieved either by enclosin...
    Subject : unspecified
    Area : Mathematics
    Language : English
    Affiliations
    Url : http://ipmma4.mate.polimi.it/~ftp/pub/techreports/tr170_p.ps
    Doi : 10.1.1.52.5275

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    An-Ping's Peer Evaluation activity

    Emailed by 1
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