DocumentCode
83265
Title
Fast and Accurate Simulation of Novel Millimeter-Wave Circuits Based on Commercial Software Package
Author
Attari, Jawad ; Djerafi, Tarek ; Ke Wu
Author_Institution
Poly-Grames Res. Center, Ecole Polytech. de Montreal, Montréal, QC, Canada
Volume
14
Issue
2
fYear
2013
fDate
March-April 2013
Firstpage
106
Lastpage
111
Abstract
The accuracy of an Eigenmode analysis for characterizing the propagation and attenuation behavior of periodic structures has been theoretically verified in [1] and [2]. When combined with full-wave simulation, one can further completely and efficiently solve periodic multimode structures and devices. In this work, a set of virtual experiments is conducted to highlight the efficiency and versatility of both solvers in characterizing a set of basic microwave devices. This was demonstrated during the IMS2012 Student Design Competition. On the other hand, the quest to bridge the gap between optical and microwave frequencies has resulted in an unprecedented growth in millimeter-wave frequencies applications. This growth is paralleled by an increase in the complexity of circuit design, owed in part to the miniaturization and high-density integration that is typical of millimeter-wave frequency circuits. This complexity necessitates the concurrent use of diverse modeling and simulation techniques to enhance the accuracy of circuit characterization.
Keywords
circuit analysis computing; circuit complexity; millimetre wave circuits; periodic structures; software packages; attenuation behavior; circuit characterization simulation techniques; circuit design complexity; commercial software package; eigenmode analysis; full-wave simulation; microwave devices; millimeter-wave circuits; millimeter-wave frequency; periodic multimode structures; propagation behavior; Attenuation; Eigenvalues and eigenfunctions; Millimeter wave circuits; Millimeter wave communication; Millimeter wave propagation; Periodic structures;
fLanguage
English
Journal_Title
Microwave Magazine, IEEE
Publisher
ieee
ISSN
1527-3342
Type
jour
DOI
10.1109/MMM.2012.2234537
Filename
6475353
Link To Document