DocumentCode :
737471
Title :
On the Ergodic Capacity of MIMO Free-Space Optical Systems Over Turbulence Channels
Author :
Jiayi Zhang ; Linglong Dai ; Yanjun Han ; Yu Zhang ; Zhaocheng Wang
Author_Institution :
Dept. of Electron. Eng. & Tsinghua Nat. Lab. for Inf. Sci. & Technol. (TNList), Tsinghua Univ., Beijing, China
Volume :
33
Issue :
9
fYear :
2015
Firstpage :
1925
Lastpage :
1934
Abstract :
Free-space optical (FSO) communications can achieve high capacity with huge unlicensed optical spectrum and low operational costs. The corresponding performance analysis of FSO systems over turbulence channels is very limited, particularly when using multiple apertures at both transmitter and receiver sides. This paper aims to provide the ergodic capacity characterization of multiple-input-multiple-output (MIMO) FSO systems over atmospheric turbulence-induced fading channels. The fluctuations of the irradiance of optical channels distorted by atmospheric conditions is usually described by a gamma-gamma (rr) distribution, and the distribution of the sum of rr random variables (RVs) is required to model the MIMO optical links. We use an α - μ distribution to efficiently approximate the probability density function (pdf) of the sum of independent and identical distributed ΓΓ RVs through moment-based estimators. Furthermore, the pdf of the sum of independent, but not necessarily identically distributed ΓΓ RVs can be efficiently approximated by a finite weighted sum of pdfs of ΓΓ distributions. Based on these reliable approximations, novel and precise analytical expressions for the ergodic capacity of MIMO FSO systems are derived. Additionally, we deduce the asymptotic simple expressions in high signal-to-noise ratio regimes, which provide useful insights into the impact of the system parameters on the ergodic capacity. Finally, our proposed results are validated via Monte Carlo simulations.
Keywords :
MIMO communication; Monte Carlo methods; fading channels; optical links; optical receivers; optical transmitters; probability; MIMO free-space optical systems; MIMO optical links; Monte Carlo simulations; asymptotic simple expressions; atmospheric conditions; atmospheric turbulence; ergodic capacity; fading channels; gamma-gamma distribution; multiple-input-multiple-output systems; optical channels; probability density function; random variables; receiver side; signal-to-noise ratio; transmitter side; turbulence channels; Delays; Interference; Optimized production technology; Power demand; Resource management; Stochastic processes; Free–space optical communications; Free-space optical communications; achievable rate; atmospheric turbulence; gamma-gamma distribution; gamma???gamma distribution;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2015.2452631
Filename :
7147776
Link To Document :
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