Title
Constellation design for decode-and-forward relay networks with adaptive modulation
Abstract
In this paper, we consider constellation design for decode-and-forward relay networks with adaptive modulation, which improves the diversity combining gain by averaging over all transmission branches the bit reliability variations brought by multilevel modulation formats. A novel bit-error-rate expression for maximal ratio combining of M-ary Quadrature Amplitude Modulation (M-QAM) signals with different modulation levels is derived based on log-likelihood ratios and employed as the metric to optimize the respective constellation schemes for source and relay nodes. A heuristic algorithm with very low computational complexity is proposed as a suboptimal solution to this problem and its concept is demonstrated by analyzing the combining process of 8QAM and 64QAM signals. Computer simulations under AWGN and Rayleigh fading channels show that our proposed constellation scheme improves the diversity combining gain effectively at the expense of only a marginal implementation complexity increase.
Year
DOI
Venue
2012
10.1109/PIMRC.2012.6362903
PIMRC
Keywords
Field
DocType
relay networks (telecommunication),diversity reception,awgn channels,decode and forward communication,maximal ratio combining,telecommunication network reliability,multilevel modulation format,log-likelihood ratio,decode-and-forward,rayleigh fading channel,heuristic algorithm,awgn channel,computational complexity,quadrature amplitude modulation,adaptive modulation,constellation design,m-qam signal,decode-and-forward relay network,m-ary quadrature amplitude modulation signal,diversity combining gain,computer simulation,error statistics,bit reliability variation,bit-error-rate expression,rayleigh channels,64qam signal,transmit diversity,8qam signal,reliability,fading,bit error rate,signal to noise ratio,modulation
Quadrature modulation,Link adaptation,Quadrature amplitude modulation,Telecommunications,Maximal-ratio combining,Computer science,Fading,Algorithm,Diversity combining,Real-time computing,Modulation error ratio,Transmit diversity
Conference
Volume
Issue
ISSN
null
null
2166-9570 E-ISBN : 978-1-4673-2568-4
ISBN
Citations 
PageRank 
978-1-4673-2568-4
1
0.37
References 
Authors
10
2
Name
Order
Citations
PageRank
Dawei Zhao119320.38
Honglin Zhao252.15