DocumentCode
3846227
Title
Optimal signaling and detector design for power-constrained binary communications systems over non-gaussian channels
Author
Cagri Goken;Sinan Gezici;Orhan Arikan
Author_Institution
Dept. of Electrical and Electronics Engineering Bilkent University
Volume
14
Issue
2
fYear
2010
Abstract
In this letter, joint optimization of signal structures and detectors is studied for binary communications systems under average power constraints in the presence of additive non-Gaussian noise. First, it is observed that the optimal signal for each symbol can be characterized by a discrete random variable with at most two mass points. Then, optimization over all possible two mass point signals and corresponding maximum a posteriori probability (MAP) decision rules are considered. It is shown that the optimization problem can be simplified into an optimization over a number of signal parameters instead of functions, which can be solved via global optimization techniques, such as particle swarm optimization. Finally, the improvements that can be obtained via the joint design of the signaling and the detector are illustrated via an example.
Keywords
"Signal detection","Detectors","Signal design","Additive noise","Gaussian noise","Communication systems","Stochastic processes","Random variables","Particle swarm optimization","Stochastic resonance"
Journal_Title
IEEE Communications Letters
Publisher
ieee
ISSN
1089-7798
Type
jour
DOI
10.1109/LCOMM.2010.02.091875
Filename
5403600
Link To Document