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Transient analysis of coupled, tapered transmission lines with arbitrary nonlinear terminations
Kyung s. Oh,
Jose E. Schutt-Aine
Electrical and Computer Engineering
Coordinated Science Lab
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Dive into the research topics of 'Transient analysis of coupled, tapered transmission lines with arbitrary nonlinear terminations'. Together they form a unique fingerprint.
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Keyphrases
Closed-form Expression
50%
Computational Efficiency
50%
Computational Stability
50%
Experimental Simulation
50%
Inhomogeneous Dielectric Media
50%
Level of Agreement
50%
Memory Requirements
50%
Nonlinear Terminations
100%
Quasi-TEM Mode
50%
S-parameters
50%
Tapered Line
50%
Tapered Transmission Line
100%
Time Domain Transients
50%
Time-domain Algorithm
50%
Time-domain Scattering
50%
Transient Analysis
100%
Transient Response
50%
Engineering
Closed Form Expression
33%
Computational Efficiency
33%
Dielectric Medium
33%
Electric Lines
100%
Good Level
33%
Lossless Line
33%
Memory Requirement
33%
Recursive
33%
Scattering Parameters
33%
Simulation Result
33%
Time Domain
100%
Transient Analysis
100%
Physics
Dielectrics
50%
Transient Response
50%
Transients
100%
Transmission Line
100%