DocumentCode
599632
Title
BER performance analysis of rayleigh fading channel in an outdoor environment with MLSE
Author
Ahmed, E.T. ; Ali, Md Mortuza ; Sarkar, M.Z.I.
Author_Institution
Dept. of Electr. & Electron. Eng., Rajshahi Univ. of Eng. & Technol., Rajshahi, Bangladesh
fYear
2012
fDate
20-22 Dec. 2012
Firstpage
157
Lastpage
160
Abstract
In this paper, we consider a communication system that uses M-ary phase shift keying (MPSK), M-ary quadrature amplitude modulation (MQAM), M-ary differential phase shift keying (MDPSK) and M-ary pulse amplitude modulation (MPAM) to transmit information over a Rayleigh fading channel perturbed by additive white Gaussian noise (AWGN). We model the Rayleigh fading channel using Jakes Doppler power spectrum and AJakes Doppler power spectrum. The performance of these different modulation techniques is analyzed in terms of bit error rate (BER) for single and multipath Rayleigh fading channel in outdoor environment by MATLAB simulation. For the simulation of Rayleigh fading channel the different property values e.g. path delays, average path gains, maximum Doppler shifts, Doppler spectrum parameters etc are chosen properly to reflect a realistic fading channel. In all the cases, our analysis shows that MQAM performs better and the system performance increases with the use of maximum likelihood sequence estimation (MLSE) equalizer.
Keywords
AWGN channels; Rayleigh channels; differential phase shift keying; error statistics; maximum likelihood sequence estimation; pulse amplitude modulation; AJakes Doppler power spectrum; AWGN; BER performance analysis; Jakes Doppler power spectrum; M-ary differential phase shift keying; M-ary phase shift keying; M-ary pulse amplitude modulation; M-ary quadrature amplitude modulation; MATLAB simulation; MDPSK; MLSE equalizer; MPAM; MPSK; MQAM; additive white Gaussian noise; bit error rate; communication system; information transmission; maximum likelihood sequence estimation equalizer; multipath Rayleigh fading channel; outdoor environment; single Rayleigh fading channel; Bit error rate; Doppler effect; Equalizers; Fading; Maximum likelihood estimation; Modulation; Signal to noise ratio; Doppler power spectral density; M-ary modulation; Rayleigh fading; bit error rate;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical & Computer Engineering (ICECE), 2012 7th International Conference on
Conference_Location
Dhaka
Print_ISBN
978-1-4673-1434-3
Type
conf
DOI
10.1109/ICECE.2012.6471509
Filename
6471509
Link To Document