DocumentCode
670614
Title
An effcient approximation of Q(√x) function and general BER performance analysis
Author
Alkurd, Rawan ; Abualhaol, Ibrahim ; Muhaidat, Sami
Author_Institution
Khalifa Univ. of Sci., Technol. & Res., Abu Dhabi, United Arab Emirates
fYear
2013
fDate
17-20 Nov. 2013
Firstpage
367
Lastpage
371
Abstract
In this paper, a novel approximation for the Gaussian Q-function in the form of Q(√x) is presented. The proposed approximation is compared with other known closed-form approximations of the Q-function in terms of accuracy and applicability. This approximation can be effciently used to simplify intractable problems which do not have explicit solutions. The approximation of the generalized probability density function (PDF) using Gaussian fnite mixture components is utilized with the proposed approximation to derive a generalized closed-form expression for the Bit Error Rate (BER) for coherent modulation techniques. The derived expression is evaluated over Nakagami-m and Weibull fading channels. Monte Carlo simulation of the average BER expression is provided over Nakagami-m and Weibull fading channels in order to validate the derived expression. The derived average SER expression can be used by engineers to evaluate the BER performance for any coherent modulation technique and over any fading channel given that the fading channel statistics are modeled using Gaussian fnite mixture.
Keywords
Gaussian channels; Monte Carlo methods; Nakagami channels; approximation theory; error statistics; mixture models; modulation; probability; Gaussian Q-function; Gaussian finite mixture component; Monte Carlo simulation; Nakagami-m fading channel; PDF; Weibull fading channel; average BER expression; average SER expression; bit error rate; closed-form approximation; coherent modulation technique; generalized probability density function; statistics; Accuracy; Approximation methods; Bit error rate; Closed-form solutions; Fading; Quadrature amplitude modulation;
fLanguage
English
Publisher
ieee
Conference_Titel
GCC Conference and Exhibition (GCC), 2013 7th IEEE
Conference_Location
Doha
Print_ISBN
978-1-4799-0722-9
Type
conf
DOI
10.1109/IEEEGCC.2013.6705806
Filename
6705806
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