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Autor(en):
Chen, Huanlei; Schmidt, Carsten H.; Eibert, Thomas F.; Che, Wenquan
Titel:
Dispersion and Attenuation Analysis of Substrate Integrated Waveguides by Driven Eigenproblem Computation
Seitenangaben Beitrag:
643--646
Abstract:
The leakage attenuation makes the modelling of substrate integrated waveguides (SIWs) a complicated complex eigenproblem. The analogy to resonators opens up a new way to solve the eigenproblem from a physical point of view. A novel driven eigenproblem computation is presented in this paper to solve the eigenproblem in periodic structure like SIW by treating the structure in a unit cell with periodic boundary and applying the model with an excitation. The dispersion and attenuation behaviour of a...     »
Stichworte:
attenuation, attenuation analysis, attenuation behaviour, boundary conditions, Computational modeling, dispersion, dispersion (wave), eigenproblem, eigenproblem computation, eigenvalues and eigenfunctions, leakage attenuation, Microwave theory and techniques, periodic boundary, periodic structure, periodic structures, propagation constant, rectangular waveguide, rectangular waveguides, resonator, substrate integrated waveguide, substrate integrated waveguides, substrates
Kongress- / Buchtitel:
5th European Conference on Antennas and Propagation (EUCAP)
Verlag / Institution:
IEEE
Verlagsort:
Rome, Italy
Jahr:
2011
Monat:
apr
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