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Égalisation par Zéro Forcé et par Erreur Quadratique Moyenne Minimale×Multiple-Input Multiple-Output (MIMO)×
DomaineTélécommunicationsTélécommunications
FamilleProcess / pipelineProcess / pipeline
Année d'origine19741995
Auteur d'origineSaleh Mansour and Paul ZervosTelatar, Foschini, and Gans
Typelinear equalization algorithmspatial multiplexing technique
Source fondatriceProakis, J. G. (2001). Digital Communications (4th ed.). McGraw-Hill. link ↗Telatar, I. (1999). Capacity of multi-antenna Gaussian channels. European Transactions on Telecommunications, 10(6), 585-595. DOI ↗
Aliaschannel equalization, interference cancellationspatial multiplexing, antenna diversity
Apparentées55
RésuméZero-Forcing (ZF) and Minimum Mean-Square Error (MMSE) equalization are fundamental linear receiver algorithms for combating intersymbol interference in dispersive channels. Developed in the context of data transmission theory, these methods form the basis of modern channel equalization in wireless and wired systems. While ZF aggressively cancels interference, MMSE balances interference suppression with noise enhancement, making it the optimal linear solution under Gaussian noise.MIMO is a technique that uses multiple transmit and receive antennas to significantly increase channel capacity and reliability. Pioneered theoretically by Telatar (1999) and Foschini & Gans (1998), MIMO exploits multipath propagation—typically a liability in wireless—as an asset by creating independent spatial channels. It is now fundamental to all modern wireless systems including LTE, WiFi-6, and 5G, where it provides both capacity gains through spatial multiplexing and robustness through diversity.
ScholarGateJeu de données
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ScholarGateComparer des méthodes: ZF/MMSE Equalization · MIMO. Consulté le 2026-06-15 sur https://scholargate.app/fr/compare