DocumentCode :
72625
Title :
Multihop Free-Space Optical Communications Over Turbulence Channels with Pointing Errors using Heterodyne Detection
Author :
Xuan Tang ; Zhaocheng Wang ; Zhengyuan Xu ; Ghassemlooy, Zabih
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
Volume :
32
Issue :
15
fYear :
2014
fDate :
Aug.1, 1 2014
Firstpage :
2597
Lastpage :
2604
Abstract :
This paper proposes and analyzes the performance of the multihop free-space optical (FSO) communication links using a heterodyne differential phase-shift keying modulation scheme operating over a turbulence induced fading channel. A novel statistical fading channel model for multihop FSO systems using channel-state-information-assisted and fixed-gain relays is developed incorporating the atmospheric turbulence, pointing errors, and path-loss effects. The closed-form expressions for the moment generating function, probability density function, and cumulative distribution function of the multihop FSO channel are derived using Meijer´s G-function. They are then used to derive the fundamental limits of the outage probability and average symbol error rate. Results confirm the performance loss as a function of the number of hops. Effects of the turbulence strength varying from weak-to-moderate and moderate-to-strong turbulence, geometric loss, and pointing errors are studied. The pointing errors can be mitigated by widening the beam at the expense of the received power level, whereas narrowing the beam can reduce the geometric loss at the cost of increased misalignment effects.
Keywords :
atmospheric optics; atmospheric turbulence; differential phase shift keying; error statistics; fading channels; heterodyne detection; optical communication; optical links; optical losses; optical modulation; statistical distributions; Meijer G-function; atmospheric turbulence; channel-state-information-assisted relay; closed-form expressions; cumulative distribution function; fixed-gain relays; geometric loss; heterodyne detection; heterodyne differential phase-shift keying modulation scheme; moment generating function; multihop FSO channel; multihop FSO systems; multihop free-space optical communication links; outage probability; path-loss effects; performance loss; pointing errors; power level; probability density function; statistical fading channel model; symbol error rate; turbulence induced fading channel; turbulence strength; Atmospheric modeling; Differential phase shift keying; Fading; Optical transmitters; Receivers; Relays; Spread spectrum communication; Atmospheric turbulence (AT); average symbol error rate (ASER); heterodyne detection; multihop free-space optical (FSO); outage probability (OP); pointing errors;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2330594
Filename :
6845311
Link To Document :
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