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Design and numerical simulation of a semi-symmetrical groove type resonator at millimeter waves

A semi-symmetrical groove guide resonator at millimeter waves is investigated both experimentally and numerically. The structure is made of duraluminium and fabricated with a maximum relative tolerance of less than 0.5%. Its resonance frequencies are measured. The simulations are performed via the p...

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Main Authors: Bechteler, A.S.A., Sevgi, L.
Format: Conference Proceeding
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Sevgi, L.
description A semi-symmetrical groove guide resonator at millimeter waves is investigated both experimentally and numerically. The structure is made of duraluminium and fabricated with a maximum relative tolerance of less than 0.5%. Its resonance frequencies are measured. The simulations are performed via the powerful time domain simulator FDTD (finite difference time domain). The comparisons are presented and the results are discussed.
doi_str_mv 10.1109/ICSMC2.2003.1429029
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ispartof 2003 IEEE International Symposium on Electromagnetic Compatibility, 2003. EMC '03, 2003, Vol.2, p.806-809 Vol.2
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Computational modeling
Finite difference methods
Frequency domain analysis
Frequency measurement
Millimeter wave communication
Millimeter wave measurements
Numerical simulation
Resonance
Resonant frequency
Time domain analysis
title Design and numerical simulation of a semi-symmetrical groove type resonator at millimeter waves
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