The Enhanced FDTD Computing of the Input Resistance of the Gap of a Stripline
Xiao-gang Yuan
Abstract
Xiao-gang Yuan
Abstract
The enhanced FDTD computing of the input resistance of the gap of a stripline is presented,the edge of the stripline is diagonal to the cell.Results of the original FDTD and emulated MWO are compared and indicate that in case of the same cells,the enhanced FDTD′s results are much more accurate than that of the original FDTD.The same accuracy is obtained even the enhanced FDTD′s basic cell length is several times longer than that of the original FDTD,and much time is saved.
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The enhanced FDTD computing of the input resistance of the gap of a stripline is presented,the edge of the stripline is diagonal to the cell.Results of the original FDTD and emulated MWO are compared and indicate that in case of the same cells,the enhanced FDTD′s results are much more accurate than that of the original FDTD.The same accuracy is obtained even the enhanced FDTD′s basic cell length is several times longer than that of the original FDTD,and much time is saved.
Key concepts: Finite-difference time-domain method, Stripline, Computer science, Diagonal, Enhanced Data Rates for GSM Evolution, Optics, Mathematics, Physics