Scientific Research An Academic Publisher
OPEN ACCESS
Add your e-mail address to receive free newsletters from SCIRP.
Select Journal AA AAD AAR AASoci AAST ABB ABC ABCR ACES ACS ACT AD ADR AE AER AHS AID AiM AIT AJAC AJC AJCC AJCM AJIBM AJMB AJOR AJPS ALAMT ALC ALS AM AMI AMPC ANP APD APE APM ARS ARSci AS ASM BLR CC CE CellBio ChnStd CM CMB CN CRCM CS CSTA CUS CWEEE Detection EMAE ENG EPE ETSN FMAR FNS GEP GIS GM Graphene GSC Health IB ICA IIM IJAA IJAMSC IJCCE IJCM IJCNS IJG IJIDS IJIS IJMNTA IJMPCERO IJNM IJOC IJOHNS InfraMatics JACEN JAMP JASMI JBBS JBCPR JBiSE JBM JBNB JBPC JCC JCDSA JCPT JCT JDAIP JDM JEAS JECTC JEMAA JEP JFCMV JFRM JGIS JHEPGC JHRSS JIBTVA JILSA JIS JMF JMGBND JMMCE JMP JPEE JQIS JSBS JSEA JSEMAT JSIP JSS JSSM JST JTR JTST JTTs JWARP LCE MC ME MI MME MNSMS MPS MR MRC MRI MSA MSCE NJGC NM NR NS OALib OALibJ ODEM OJA OJAB OJAcct OJAnes OJAP OJApo OJAppS OJAPr OJAS OJBD OJBIPHY OJBM OJC OJCB OJCD OJCE OJCM OJD OJDer OJDM OJE OJEE OJEM OJEMD OJEpi OJER OJF OJFD OJG OJGas OJGen OJI OJIC OJIM OJINM OJL OJM OJMC OJMetal OJMH OJMI OJMIP OJML OJMM OJMN OJMP OJMS OJMSi OJN OJNeph OJO OJOG OJOGas OJOp OJOph OJOPM OJOTS OJPathology OJPC OJPChem OJPed OJPM OJPP OJPS OJPsych OJRA OJRad OJRD OJRM OJS OJSS OJSST OJST OJSTA OJTR OJTS OJU OJVM OPJ POS PP PST PSYCH SAR SCD SGRE SM SN SNL Soft SS TEL TI UOAJ VP WET WJA WJCD WJCMP WJCS WJET WJM WJNS WJNSE WJNST WJV WSN YM
More>>
L. Lewin, “Advanced Theory of Waveguide,” Iliffe, 1951.
has been cited by the following article:
TITLE: Aperture Field Estimation in Waveguide for Non-Sinusoidal Periodic Excitation
AUTHORS: Sushrut Das, Kalidas Marandi
KEYWORDS: Waveguides; Aperture Distribution; Non-Sinusoidal Periodic Excitation; Moment Method
JOURNAL NAME: Journal of Electromagnetic Analysis and Applications, Vol.4 No.3, March 28, 2012
ABSTRACT: In this paper an attempt has been made to find the aperture field distribution in a rectangular waveguide for non-sinusoidal, periodic excitations using Multiple Cavity Modeling Technique. The excitation functions, considered, are square, trapezoidal and clipped sine wave in nature. In the present analysis these time domain excitation functions have been represented in terms of a truncated Fourier series consisting of the fundamental frequency and its higher harmonics. Within the waveguide the fundamental frequency will give rise to a dominant mode excitation whereas the higher order modes will excite dominant as higher order modes. If the higher harmonics are assumed suppressed then the waveguide is subjected only to a dominant mode excitation. Results for dominant mode reflection coefficient (magnitude), VSWR and complex transmission coefficient have been computed and compared with theoretical data. The excellent agreement between them validates the analysis.
Related Articles:
The MET Analysis of Yield Performance of Advanced Sorghum [Sorghum Bicolor (L.) Moench] Lines under Moisture Stress Areas Using Spatial Analysis
Kidanemaryam Wagaw, Amare Seyoum, Taye Tadesse, Adane Gebreyohannes, Amare Nega, Diriba Tadesse
DOI: 10.4236/ajps.2020.1110117 84 Downloads 227 Views Citations
Pub. Date: October 28, 2020
H0i-Eigenwave Characteristics of a Periodic Iris-Loaded Circular Waveguide
Sergey Katenev Katenev, He Shi
DOI: 10.4236/jemaa.2010.27057 2,898 Downloads 5,426 Views Citations
Pub. Date: July 30, 2010
Development of the Biopolymeric Optical Planar Waveguide with Nanopattern
Seung H. Yoon, Won T. Jeong, Kyung C. Kim, Kyung J. Kim, Min C. Oh, Sang M. Lee
DOI: 10.4236/jsemat.2011.12009 4,530 Downloads 7,879 Views Citations
Pub. Date: July 21, 2011
Design of a Silicon Overlay Glass Waveguide Sensor
Kristian E. Medri, Robert C. Gauthier
DOI: 10.4236/opj.2011.14025 5,021 Downloads 8,572 Views Citations
Pub. Date: December 5, 2011
Waveguide Propagation in Extended Plates of Variable Thickness
Safarov Ismail Ibragimovich, Akhmedov Maqsud Sharipovich, Boltaev Zafar Ihterovich
DOI: 10.4236/oalib.1101166 1,600 Downloads 1,884 Views Citations
Pub. Date: December 31, 2014