DocumentCode
798055
Title
Equal-gain and maximal-ratio combining over nonidentical Weibull fading channels
Author
Karagiannidis, George K. ; Zogas, Dimitris A. ; Sagias, Nikos C. ; Kotsopoulos, Stavros A. ; Tombras, George S.
Author_Institution
Nat. Obs. of Athens, Inst. for Space Applic. & Remote Sensing, Athens, Greece
Volume
4
Issue
3
fYear
2005
fDate
5/1/2005 12:00:00 AM
Firstpage
841
Lastpage
846
Abstract
We study the performance of L-branch equal-gain combining (EGC) and maximal-ratio combining (MRC) receivers operating over nonidentical Weibull-fading channels. Closed-form expressions are derived for the moments of the signal-to-noise ratio (SNR) at the output of the combiner and significant performance criteria, for both independent and correlative fading, such as average output SNR, amount of fading and spectral efficiency at the low power regime, are studied. We also evaluate the outage and the average symbol error probability (ASEP) for several coherent and noncoherent modulation schemes, using a closed-form expression for the moment-generating function (mgf) of the output SNR for MRC receivers and the Pade´ approximation to the mgf for EGC receivers. The ASEP of dual-branch EGC and MRC receivers is also obtained in correlative fading. The proposed mathematical analysis is complimented by various numerical results, which point out the effects of fading severity and correlation on the overall system performance. Computer simulations are also performed to verify the validity and the accuracy of the proposed theoretical approach.
Keywords
Weibull distribution; error statistics; fading channels; modulation; radio receivers; Pade approximation; average symbol error probability; closed-form expression; coherent modulation scheme; correlative fading; dual-branch equal-gain combining receiver; maximal-ratio combining receiver; moment-generating function; noncoherent modulation scheme; nonidentical Weibull fading channel; outage probability; signal-to-noise ratio; Closed-form solution; Computer simulation; Diversity reception; Error probability; Mathematical analysis; Performance analysis; Rayleigh channels; Signal to noise ratio; System performance; Weibull fading channels; Amount of fading (AoF); Weibull fading channels; correlated fading; equal-gain combining (EGC); maximal-ratio combining (MRC); outage probability; spectral efficiency (SE);
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2005.846982
Filename
1427672
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