Meshless eigenvalue analysis for resonant structures based on the radial point interpolation method

Thomas Kaufmann, Christophe Fumeaux, Christian Engström, Ruediger Vahldieck

Forskningsoutput: Kapitel i bok/rapport/Conference proceedingKonferenspaper i proceedingPeer review

Sammanfattning

Meshless methods are a promising field of numerical methods recently introduced to computational electromagnetics. The potential of conformal and multi-scale modeling and the possibility of dynamic grid refinements are very attractive features that appear more naturally in meshless methods than in classical methods. The Radial Point Interpolation Method (RPIM) uses radial basis functions for the approximation of spatial derivatives. In this publication an eigenvalue solver is introduced for RPIM in electromagnetics. Eigenmodes are calculated on the example of a cylindrical resonant cavity. It is demonstrated that the computed resonance frequencies converge to the analytical values for increasingly fine spatial discretization. The computation of eigenmodes is an important tool to support research on a timedomain implementation of RPIM. It allows a characterization of the method's accuracy and to investigate stability issues caused by the possible occurrence of non-physical solutions.

Originalspråkengelska
Titel på värdpublikationAPMC 2009 - Asia Pacific Microwave Conference 2009
Sidor818-821
Antal sidor4
DOI
StatusPublished - 2009
Externt publiceradJa
EvenemangAsia Pacific Microwave Conference 2009, APMC 2009 - Singapore, Singapore
Varaktighet: 2009 dec. 72009 dec. 10

Konferens

KonferensAsia Pacific Microwave Conference 2009, APMC 2009
Land/TerritoriumSingapore
OrtSingapore
Period2009/12/072009/12/10

Ämnesklassifikation (UKÄ)

  • Beräkningsmatematik

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