Creator | Title | Description | Subject | Date | ||
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1 |
![]() | Christensen, Douglas A. | General formulation for connecting sources and passive lumped-circuit elements across multiple 3-D FDTD cells | A previous extension of the finite-difference time-domain (FDTD) method to include lumped-circuit elements is further extended to model lumped-element circuits connected across multiple FDTD cells. This formulation is needed to model many kinds of circuits, like those with a transistor or other ac... | Finite-difference time-domain method; Lumped-element circuit; Dielectric; Microstrip | 1996-02 |
2 |
![]() | Furse, Cynthia M.; Gandhi, Om P. | Why the DFT is faster than the FFT for FDTD time-to-frequency domain conversions | Although it is a time-domain method, the finite difference time-domain (FDTD) method has been used extensively for calculating frequency domain parameters such as specific absorption rate, radar cross-section, and S-parameters. When a broad frequency band is of interest, using a broad-band pulsed ... | Discrete Fourier transform; DFT; Fast Fourier transform; FFT; Finite-difference time-domain; FDTD; Frequency domain parameters | 1995-10 |