Ergodic capacity comparison of optical wireless communications using adaptive transmissions

被引:21
作者
Hassan, Md Zoheb [1 ]
Hossain, Md Jahangir [1 ]
Cheng, Julian [1 ]
机构
[1] Univ British Columbia, Sch Engn, Kelowna, BC V1V 1V7, Canada
来源
OPTICS EXPRESS | 2013年 / 21卷 / 17期
关键词
AVERAGE CAPACITY; TURBULENCE CHANNELS; COHERENT; SYSTEMS; LINKS; PERFORMANCE; MODULATION;
D O I
10.1364/OE.21.020346
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Ergodic capacity is investigated for the optical wireless communications employing subcarrier intensity modulation with direct detection, and coherent systems with and without polarization multiplexing over the Gamma-Gamma turbulence channels. We consider three different adaptive transmission schemes: (i) variable-power, variable-rate adaptive transmission, (ii) complete channel inversion with fixed rate, and (iii) truncated channel inversion with fixed rate. For the considered systems, highly accurate series expressions for ergodic capacity are derived using a series expansion of the modified Bessel function and the Mellin transformation of the Gamma-Gamma random variable. Our asymptotic analysis reveals that the high SNR ergodic capacities of coherent, subcarrier intensity modulated, and polarization multiplexing systems gain 0.33 bits/s/Hz, 0.66 bits/s/Hz, and 0.66 bits/s/Hz respectively with 1 dB increase of average transmitted optical power. Numerical results indicate that a polarization control error less than 10 degrees has little influence on the capacity performance of polarization multiplexing systems. (C) 2013 Optical Society of America
引用
收藏
页码:20346 / 20362
页数:17
相关论文
共 37 条
[1]  
Agrawal G.P., 2002, FIBER OPTICAL COMMUN, V3rd
[2]   Mathematical model for the irradiance probability density function of a laser beam propagating through turbulent media [J].
Al-Habash, MA ;
Andrews, LC ;
Phillips, RL .
OPTICAL ENGINEERING, 2001, 40 (08) :1554-1562
[3]   Shannon capacities and error-correction codes for optical atmospheric turbulent channels [J].
Anguita, JA ;
Djordjevic, IB ;
Neifeld, MA ;
Vasic, BV .
JOURNAL OF OPTICAL NETWORKING, 2005, 4 (09) :586-601
[4]  
Banerjee D., 2006, PLL performance, simulation and design
[5]   Capacity of coherent free-space optical links using diversity-combining techniques [J].
Belmonte, Aniceto ;
Kahn, Joseph M. .
OPTICS EXPRESS, 2009, 17 (15) :12601-12611
[6]   Capacity of coherent free-space optical links using atmospheric compensation techniques [J].
Belmonte, Aniceto ;
Kahn, Joseph M. .
OPTICS EXPRESS, 2009, 17 (04) :2763-2773
[7]   Free-space optical communications [J].
Chan, Vincent W. S. .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2006, 24 (12) :4750-4762
[8]   Adaptive Subcarrier PSK Intensity Modulation in Free Space Optical Systems [J].
Chatzidiamantis, Nestor D. ;
Lioumpas, Athanasios S. ;
Karagiannidis, George K. ;
Arnon, Shlomi .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2011, 59 (05) :1368-1377
[9]   THE MOMENT-GENERATING FUNCTION AND NEGATIVE INTEGER MOMENTS [J].
CRESSIE, N ;
DAVIS, AS ;
FOLKS, JL ;
POLICELLO, GE .
AMERICAN STATISTICIAN, 1981, 35 (03) :148-150
[10]   Polarization-Multiplexed Optical Wireless Transmission With Coherent Detection [J].
Cvijetic, Neda ;
Qian, Dayou ;
Yu, Jianjun ;
Huang, Yue-Kai ;
Wang, Ting .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2010, 28 (08) :1218-1227