DocumentCode :
3139426
Title :
On the BEP performance of binary noncoherent modulation schemes in frequency-nonselective M2M double Hoyt fading channels
Author :
Hajri, Nazih ; Youssef, Neji
Author_Institution :
Ecole Super. des Commun. de Tunis, Ariana, Tunisia
fYear :
2012
fDate :
26-28 June 2012
Firstpage :
379
Lastpage :
383
Abstract :
In this paper, we study the performance of binary noncoherent modulation schemes in mobile-to-mobile (M2M) radio communications over slowly varying and frequency nonselective double Hoyt fading channels perturbed by additive white Gaussian noise (AWGN). The propagation environment between the mobile transmitter and receiver is modeled by a product of two independent but not necessarily identically distributed Hoyt multipath fading processes. By considering this multipath fading model and based on the use of a recently presented formula for the probability density function (PDF) of the instantaneous signal-to-noise ratio (SNR) under double Hoyt channels, we derive a generic expression for the bit error probability (BEP) performance of binary noncoherent differential phase-shift keying (DPSK) and frequency-shift keying (FSK) modulation schemes. As special cases, the obtained BEP expression includes results corresponding to the double Rayleigh, double one-sided Gaussian, as well as combined Rayleigh×one-sided Gaussian, Rayleigh×Hoyt, and Hoyt×one-sided Gaussian fading channels. By considering different combinations of the Hoyt fading severity parameters, the validity and accuracy of the presented analytical results are confirmed by simulations.
Keywords :
AWGN channels; Rayleigh channels; differential phase shift keying; error statistics; frequency shift keying; mobile radio; multipath channels; probability; radio receivers; radio transmitters; radiowave propagation; AWGN; BEP expression; BEP performance; DPSK; FSK modulation; Hoyt fading severity parameter; PDF; SNR; additive white Gaussian noise; binary noncoherent differential phase-shift keying; binary noncoherent modulation scheme; bit error probability; distributed Hoyt multipath fading process; double Rayleigh double one-sided Gaussian fading channel; frequency-nonselective M2M double Hoyt fading channel; frequency-shift keying modulation; instantaneous signal-to-noise ratio; mobile receiver; mobile transmitter; mobile-to-mobile radio communication; probability density function; propagation environment; Differential phase shift keying; Frequency shift keying; Lead; Rayleigh channels; Signal to noise ratio; Mobile-to-mobile communications; binary noncoherent modulation schemes; bit error probability; double Hoyt fading channels;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Information Technology (ICCIT), 2012 International Conference on
Conference_Location :
Hammamet
Print_ISBN :
978-1-4673-1949-2
Type :
conf
DOI :
10.1109/ICCITechnol.2012.6285830
Filename :
6285830
Link To Document :
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