Title
Impact of channel prediction on adaptive coded modulation performance in Rayleigh fading
Abstract
Adaptive coded modulation (ACM) is a promising tool for increasing the spectral efficiency of time-varying mobile channels while maintaining a predictable bit-error rate (BER). An important restriction in systems with such a transmission scheme is that the transmitter needs to have accurate channel-state information (CSI). Earlier analysis of ACM systems usually assumes that the transmitter has perfect knowledge of the channel or that the CSI is accurate but outdated. In this paper, we investigate the effects of predicting the CSI using a linear fading-envelope predictor in order to enhance the performance of an ACM system. For the case in which multidimensional trellis codes are used on Rayleigh-fading channels, we obtain approximative closed-form expressions for BER and average spectral efficiency. Numerical examples are given for the case of Jakes correlation profile and maximum a posteriori-optimal predictor coefficients.
Year
DOI
Venue
2004
10.1109/TVT.2004.827156
Vehicular Technology, IEEE Transactions
Keywords
Field
DocType
Rayleigh channels,adaptive codes,adaptive modulation,channel coding,channel estimation,error statistics,maximum likelihood estimation,mobile communication,modulation coding,time-varying channels,trellis codes,BER,Jakes correlation profile,Rayleigh fading channels,adaptive coded modulation,bit-error rate,channel prediction,channel-state information,linear fading-envelope predictor,maximum a posteriori-optimal predictor,mobile channels,multidimensional trellis codes,time-varying channels,Adaptive modulation,antenna diversity,channel estimation,fading channels
Link adaptation,Transmitter,Antenna diversity,Rayleigh fading,Expression (mathematics),Computer science,Communication channel,Electronic engineering,Spectral efficiency,System identification
Journal
Volume
Issue
ISSN
53
3
0018-9545
Citations 
PageRank 
References 
61
4.00
9
Authors
3
Name
Order
Citations
PageRank
Geir E. Øien138143.38
Holm, H.2614.00
Hole, K.J.312712.73