DocumentCode :
190034
Title :
Design and simulation of metal PBG waveguide mode launcher
Author :
Thottappan, M. ; Jain, P.K.
Author_Institution :
Dept. of Electron. Eng., Banaras Hindu Univ., Varanasi, India
fYear :
2014
fDate :
14-16 April 2014
Firstpage :
319
Lastpage :
323
Abstract :
The design and simulation of a metal Photonic Band Gap (MPBG) cylindrical waveguide to a conventional rectangular waveguide transition using a wraparound co-axial coupler is presented. A rectangular waveguide drives a combined wraparound co-axial / MPBG cylindrical waveguide system. The wraparound co-axial input coupler converts a dominant rectangular waveguide mode into a resonator mode and which is then coupled into the MPBG waveguide for the desired circular mode. A typical wraparound coaxial coupler for exciting a Ka-band MPBG waveguide has been designed. The structure has been simulated using 3-D electromagnetic code `CST Microwave studio´. Its Eigen mode simulation ensures that the RF magnetic field coupling into the co-axial waveguide through five azimuthally spaced apertures. Further, this simulation shows the confinement of the desired TE01-like mode in the defect portion of the MPBG triangular lattice structure and ensures that the all other competing spurious modes are suppressed. The transient analysis has also been preformed and it confirms the mode propagation in PBG waveguide through the calculation of insertion loss. The coaxial coupler offers a return loss and insertion loss of -30 dB and -0.5 dB respectively at 35 GHz with a wide bandwidth about 6%.
Keywords :
circuit simulation; circular waveguides; coaxial waveguides; eigenvalues and eigenfunctions; millimetre wave resonators; network synthesis; photonic band gap; rectangular waveguides; waveguide couplers; waveguide transitions; 3-D electromagnetic code; CST Microwave studio; MPBG triangular lattice structure; RF magnetic field coupling; TE01-like mode; azimuthally spaced aperture; dominant rectangular waveguide transition mode; eigenmode simulation; frequency 35 GHz; insertion loss; ka-band MPBG waveguide; loss -0.5 dB; loss -30 dB; metal PBG cylindrical waveguide mode launcher; photonic band gap; resonator mode; return loss; transient analysis; wraparound coaxial input coupler; Cavity resonators; Couplers; Couplings; Lattices; Metals; Rectangular waveguides; Metal PBG; competing modes; mode suppression; wraparound coupler;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Region 10 Symposium, 2014 IEEE
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4799-2028-0
Type :
conf
DOI :
10.1109/TENCONSpring.2014.6863050
Filename :
6863050
Link To Document :
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