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Adaptive modulation and decision feedback equalization for frequency‐selective MIMO channels
Authors:Mohamed Lassaad Ammari  Kalthoum Zaouali  Paul Fortier
Affiliation:1. InovCom Lab, Higher School of Communications of Tunis, Sup'Com, University of Carthage, Tunisia;2. Department of Electrical and Computer Engineering, Laval University, Quebec City, QC, Canada
Abstract:In this paper, an adaptive modulation scheme for the multiple‐input multiple‐output (MIMO) frequency‐selective channels is investigated. We consider a scenario with precoded block‐based transceivers over spatially correlated Rayleigh multipath MIMO channels. To eliminate the inter‐block interference, the zero‐padding is used. The receiver is equipped with a MIMO minimum‐mean‐squared‐error decision feedback equalizer. The precoder aims to force each subchannel to have an identical signal‐to‐interference‐plus‐noise ratio (SINR). To adjust the constellation size, the unbiased mean square error at the equalizer output is sent back to the transmitter. To simplify our analysis, the feedback channel is considered as instantaneous and error free. We first derive the probability density function of the overall SINR for flat fading and frequency‐selective channels. On the basis of the probability density function of the upper bound of the SINR, we evaluate the system performance. We present accurate closed‐form expressions of the average spectral efficiency, the average bit error rate and the outage probability. The derived expressions are compared with Monte Carlo simulation results. Furthermore, we analyze the effect of the channel spatial correlation. Copyright © 2013 John Wiley & Sons, Ltd.
Keywords:adaptive modulation  MIMO frequency‐selective channel  precoder  Zero‐padding  minimum‐mean‐squared‐error decision feedback equalizer  geometric mean decomposition
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