DocumentCode :
1789310
Title :
Multiuser dual-hop relaying over mixed RF/FSO links
Author :
Miridakis, Nikolaos I. ; Matthaiou, Michail ; Karagiannidis, G.K.
Author_Institution :
Dept. of Inf., Univ. of Piraeus, Piraeus, Greece
fYear :
2014
fDate :
10-14 June 2014
Firstpage :
3389
Lastpage :
3394
Abstract :
The performance of multiuser dual-hop relaying over mixed radio frequency/free-space optical (RF/FSO) links is investigated. RF links are used for the simultaneous data transmission from m single-antenna sources to the relay, which is equipped with n ≥ m receive antennas and a photo-aperture transmitter. The relay operates under the decode-and-forward protocol and utilizes the popular ordered V-BLAST technique to successively decode each user´s transmitted stream. A common norm-based ordering approach is adopted, where the streams are decoded in an ascending order. After the V-BLAST decoding, the relay retransmits the initial information to the destination, which is equipped with a photo-detector, via a point-to-point FSO link in m consecutive timeslots. Analytical expressions for the end-to-end outage probability and average symbol error probability of each user are derived. Some engineering insights are manifested, such as the diversity order, the impact of the pointing error displacement on the FSO link and the severity on the turbulence-induced channel fading.
Keywords :
decode and forward communication; error statistics; fading channels; optical links; optical transmitters; relay networks (telecommunication); V-BLAST decoding; V-BLAST technique; average symbol error probability; data transmission; decode-and-forward protocol; diversity order; end-to-end outage probability; free-space optical links; mixed RF/FSO links; multiuser dual-hop relaying; norm-based ordering approach; photo-aperture transmitter; photo-detector; point-to-point FSO link; pointing error displacement; radio frequency links; receive antennas; single-antenna sources; turbulence-induced channel fading; Decoding; Educational institutions; Fading; Radio frequency; Relays; Signal to noise ratio; Silicon carbide;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
Type :
conf
DOI :
10.1109/ICC.2014.6883845
Filename :
6883845
Link To Document :
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