DocumentCode :
1350140
Title :
Performance analysis of optimum combining in wireless communications with Rayleigh fading and cochannel interference
Author :
Shah, Amit ; Haimovich, Alexander M.
Volume :
46
Issue :
4
fYear :
1998
fDate :
4/1/1998 12:00:00 AM
Firstpage :
473
Lastpage :
479
Abstract :
Optimum combining for space diversity reception is studied in digital cellular mobile radio communication systems with Rayleigh fading and multiple cochannel interferers. This paper considers binary phase-shift keying (BPSK) modulation in a flat Rayleigh-fading environment when the number of interferences L is no less than the number of antenna elements N(L⩾N). The approach of this paper and its main contribution is to carry out the analysis in a multivariate framework. Using this approach and with the assumption of equal-power interferers, it is shown that the probability density function of the maximum signal-to-interference ratio (SIR) at the output of the optimum combiner has a Hotelling T2 distribution. Closed form expressions using hypergeometric functions are derived for the outage probability and the average probability of bit error. Theoretical results are demonstrated by Monte Carlo simulations
Keywords :
Rayleigh channels; array signal processing; cellular radio; cochannel interference; digital radio; direction-of-arrival estimation; diversity reception; error statistics; fading; land mobile radio; phase shift keying; probability; BPSK; Hotelling T2 distribution; Monte Carlo simulations; antenna array; antenna elements; average bit error probability; binary phase-shift keying; closed form expressions; cochannel interference; digital cellular radio; equal-power interferers; flat Rayleigh fading; hypergeometric functions; maximum signal-to-interference ratio; mobile communication systems; optimum combining; outage probability; performance analysis; probability density function; space diversity reception; wireless communications; Binary phase shift keying; Communication systems; Diversity reception; Interference; Land mobile radio; Performance analysis; Phase modulation; Phase shift keying; Probability density function; Rayleigh channels;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/26.664303
Filename :
664303
Link To Document :
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