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Análisis de Parámetros S×Método de la Matriz de Línea de Transmisión×
CampoIngeniería eléctricaIngeniería eléctrica
FamiliaProcess / pipelineProcess / pipeline
Año de origen19651971
Autor originalKaneyuki KurokawaPeter Johns
TipoWave-based description of RF/microwave network behaviorTransmission line network analogous to electromagnetic fields
Fuente seminalKurokawa, K. (1965). Power waves and the scattering matrix. IEEE Transactions on Microwave Theory and Techniques, 13(3), 194-202. DOI ↗Johns, P. B., & Beurle, R. L. (1971). Numerical solution of 2-D scattering problems using a transmission-line calculator. Proceedings of the IEE, 118(9), 1203-1208. link ↗
AliasS-parameter, Scattering parameters, Network parametersTLM, Transmission line matrix
Relacionados33
ResumenS-Parameters (Scattering Parameters) characterize RF and microwave networks by their transmission and reflection of voltage waves. Introduced by Kurokawa in 1965, S-parameters are ideal for high frequencies where wave effects dominate. Unlike impedance (Z), admittance (Y), or hybrid parameters, S-parameters are directly measurable with network analyzers, naturally account for characteristic impedance, and are intuitive for cascade analysis. S-parameters are the standard language of RF engineering.The Transmission-Line Matrix (TLM) method is a direct discretization of Maxwell equations using an equivalent transmission line network. Introduced by Johns and Beurle in 1971, TLM models electromagnetic fields as voltage and current waves propagating on coupled transmission lines. The method is intuitive, numerically stable, and efficient for both transient and frequency-domain electromagnetic problems. TLM remains competitive with FDTD and FIT for many RF and microwave applications.
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  1. v1
  2. 3 Fuentes
  3. PUBLISHED
  1. v1
  2. 3 Fuentes
  3. PUBLISHED

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ScholarGateComparar métodos: S-Parameter Analysis · Transmission-Line Matrix Method. Recuperado el 2026-06-17 de https://scholargate.app/es/compare