DocumentCode :
185407
Title :
Closed-form expression for outage probability in relay-based cooperative diversity systems over Nakagami fading channels with interference
Author :
Mohaisen, Rami ; Al-Mistarihi, Mamoun F. ; Sharaqa, Ashraf
Author_Institution :
Electr. Eng. Dept., Jordan Univ. of Sci. & Technol., Irbid, Jordan
fYear :
2014
fDate :
26-30 May 2014
Firstpage :
577
Lastpage :
581
Abstract :
Incremental relaying, which is a form of the adaptive cooperative wireless networks, has been recently introduced to compensate for the channel resources utilization deficiencies associated with the fixed relaying schemes. Incremental relaying operates by exploiting a feedback from the destination to both the source and the relay that inform them about usability of the source-destination direct channel and by this, the channel resources will be saved since the relay will be used only when needed. This paper discusses the performance, namely the outage probability, of the decode-and-forward incremental relaying scheme over Nakagami-m fading channel and incorporates the effects of the multiple L interferers near the destination that will degrade the overall system performance. Numerical results are provided to validate our derivations.
Keywords :
Nakagami channels; cooperative communication; decode and forward communication; diversity reception; probability; radiofrequency interference; relay networks (telecommunication); Nakagami fading channels; adaptive cooperative wireless networks; channel resources utilization deficiency; closed-form expression; decode-and-forward incremental relaying scheme; fixed relaying schemes; interference; multiple L interferers; outage probability; relay-based cooperative diversity systems; source-destination direct channel; Closed-form solutions; Fading; Interference; Probability density function; Relays; Signal to noise ratio; System performance; Cooperative Diversity; Decode-and-Forward; Fixed Relaying; Incremental Relaying; Maximal Ratio Combiner (MRC); Outage Probability; Signal to Interference Ratio; Signal to Noise Ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Communication Technology, Electronics and Microelectronics (MIPRO), 2014 37th International Convention on
Conference_Location :
Opatija
Print_ISBN :
978-953-233-081-6
Type :
conf
DOI :
10.1109/MIPRO.2014.6859634
Filename :
6859634
Link To Document :
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