LN-FDTDLumped-Network Finite Difference Time Domain
LN-FDTDLocal Nonorthogonal Finite-Difference Time-Domain
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where N is the step number of the LN-FDTD method and n the ratio of N to the step number of the LN-ADI-FDTD method.
Moreover, the CPU time of the LN-ADI-FDTD method when CFLN = 3 and CFLN = 4.5 is less than the LN-FDTD method when CFLN = 0.75.
Finally, a microstrip with lumped networks has been computed by the LN-ADI-FDTD method and the LN-FDTD method, simulated by the ADS and HFSS+ADS approach.