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Time domain modeling of electromagnetic radiation with application to ultrafast electronic and wireless communicationRemley, Catherine A. 16 March 1999 (has links)
Graduation date: 1999
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Three dimensional electromagnetic FDTD simulation of general lossy structures with nonuniform grid spacingFalconer, Maynard C. 23 January 1997 (has links)
A new second order accurate nonuniform grid spacing technique which does not
depend on supraconvergence is developed for Finite Difference Time Domain (FDTD)
simulation of general three dimensional structures. The technique is useful for FDTD
simulations of systems which require finer details in small regions of the simulation space by
providing the ability to utilize nonuniform grid spacing. The stability conditions of the new
technique are derived and shown to be consistent with uniform grid formulation and the
accuracy of the technique is investigated and shown to be second order. The advantage of
the new technique is that it allows for greater simulation detail while reducing the
computational and memory requirements compared to the current uniform grid FDTD
techniques.
Additionally, the derivation of the expressions associated with the inclusion of material
properties in the FDTD simulation with nonuniform grids is presented allowing for the
development of a nonuniform FDTD simulator for general lossy 3D systems associated
with on and off chip interconnects, electronic packages and microwave circuits. In order to
illustrate the utility of this simulator, time domain electromagnetic simulation of a 3-D lossy
interconnect structure associated with a generic surface mount IC package is presented.
The time domain currents and fields are computed in the structure to investigate ground
bounce, signal degradation, and crosstalk associated with the interconnects and packaging
structure. The supply plane conductivities are included in the simulation allowing the
observation of the current densities in the power/ground planes as a function of time.
Finally, the FDTD simulation tool is proposed and used as a Virtual TDR (V-TDR) to
extract the circuit models associated with complex 3D structures. The time domain
response of a multiport structure is used to extract the equivalent circuit parameters to
characterize the multiport by using the multiport time domain reflection (TDR) based
general deconvolution algorithm. Examples of coupled interconnects and transmission
lines are presented to illustrate this technique. / Graduation date: 1997
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FDTD studies of frequency selective surfaces /Skinner Neal Gregory, January 2006 (has links)
Thesis (Ph. D.)--University of Texas at Dallas, 2006. / Includes vita. Includes bibliographical references (leaves 253-256).
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Contrawound toroidal helical antenna modeling using the FDTD methodElSherbini, Khaled Mohammad. January 2000 (has links)
Thesis (Ph. D.)--West Virginia University, 2000. / Title from document title page. Document formatted into pages; contains xiii, 325 p. : ill. (some col.). Includes abstract. Includes bibliographical references (p. 138-144).
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Theoretical basis for numerically exact three-dimensional time-domain algorithmsWagner, Christopher Lincoln, January 2004 (has links) (PDF)
Thesis (Ph. D.)--Washington State University. / Includes bibliographical references.
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Spectrum analysis using time domain fourier filter outputs to improve FFT estimates /Chan, Siu-hung. January 1988 (has links)
Thesis (M. Phil.)--University of Hong Kong, 1989.
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Spectrum analysis using time domain fourier filter outputs to improve FFT estimates陳銚鴻, Chan, Siu-hung. January 1988 (has links)
published_or_final_version / Mechanical Engineering / Master / Master of Philosophy
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On approximation methods in time domain network synthesisHuang, Shih Huang, 1923- January 1961 (has links)
No description available.
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FDTD measurement of the reflection coefficient associated with total internal reflection from gainy Lorentzian mediaTuerxunjiang, Abulikemu, January 2008 (has links) (PDF)
Thesis (M.S. in physics)--Washington State University, December 2008. / Title from PDF title page (viewed on July 10, 2009). "Department of Physics and Astronomy." Includes bibliographical references (p. 64-68).
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Time domain boundary element method & its applications /Lei, Zhexiang. January 1993 (has links)
Thesis (Ph. D.)--University of Hong Kong, 1994. / Includes bibliographical references (leaves 264-278).
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