DocumentCode :
2797142
Title :
Optimum design of N sheet capactive Jaumann absorber using genetic algorithm
Author :
Cheldavi, A. ; Kamarei, M.
Author_Institution :
Tehran Univ., Iran
Volume :
4
fYear :
1997
fDate :
13-18 July 1997
Firstpage :
2296
Abstract :
An optimum design for N(arbitrary)-sheet capacitive Jaumann electromagnetic (EM) wave absorber, using the genetic algorithm is presented. This algorithm is a random optimization method. We show the bandwidth for two-sheet capacity Jaumann absorber can be expanded even more than 108% as showed by Knott (see IEEE Trans.AP, vol.43, no.11, 1995), by using this algorithm and without imposing the double-notch design criteria. We also show that our results approaches Knott´s results when we restrict the characteristic impedances and lengths of the lines to vary within a very short range. We also design one-sheet and three-sheet capacitive Jaumann absorbers. Finally we obtain a 20-dB attenuation bandwidth of more than 145% for one-sheet, 173% for two-sheet and 193% for three-sheet capacitive Jaumann EM absorbers, with some acceptable short range for the variables. We design the one-sheet and two-sheet capacitive Jaumann absorbers at low frequency and the three-sheet at high frequency. The 20-dB attenuation bandwidth obtained for the one-sheet and two-sheet capacitive Jaumann absorbers are respectively, from 10 to 77 MHz and, from 4 to 61 MHz. For the three-sheet capacitive Jaumann absorber the 20-dB attenuation bandwidth obtained is from 0.8 GHz to 280 GHz.
Keywords :
capacitance; electromagnetic devices; electromagnetic wave absorption; genetic algorithms; transmission line theory; 0.8 to 280 GHz; 10 to 77 MHz; 20 dB; 4 to 61 MHz; Jaumann EM wave absorber; attenuation bandwidth; characteristic impedances; genetic algorithm; high frequency; line lengths; low frequency; one-sheet capactive Jaumann absorber; optimum design; random optimization method; three-sheet capacitive Jaumann absorber; transmission line simulation; two-sheet capacitive Jaumann absorbers; Algorithm design and analysis; Attenuation; Bandwidth; Design optimization; Frequency; Genetic algorithms; Humans; Impedance; Optimization methods; Reflectivity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 1997. IEEE., 1997 Digest
Conference_Location :
Montreal, Quebec, Canada
Print_ISBN :
0-7803-4178-3
Type :
conf
DOI :
10.1109/APS.1997.625428
Filename :
625428
Link To Document :
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