光学学报, 2016, 36 (3): 0301001, 网络出版: 2016-01-25   

强背景光下可见光大气湍流信道建模及分集接收技术

Turbulence Channel Modeling of Visible Light Communication under Strong Background Noise and Diversity Receiving Technologies
作者单位
复旦大学通信科学与工程系电磁波信息科学教育部重点实验室, 上海 200433
引用该论文

赵嘉琦, 许银帆, 李洁慧, 王一光, 迟楠. 强背景光下可见光大气湍流信道建模及分集接收技术[J]. 光学学报, 2016, 36(3): 0301001.

Zhao Jiaqi, Xu Yinfan, Li Jiehui, Wang Yiguang, Chi Nan. Turbulence Channel Modeling of Visible Light Communication under Strong Background Noise and Diversity Receiving Technologies[J]. Acta Optica Sinica, 2016, 36(3): 0301001.

参考文献

[1] Wang Y, Huang X, Tao L, et al.. 45-Gb/s RGB-LED based WDM visible light communication system employing CAP modulation and RLS based adaptive equalization[J]. Optics Express, 2015, 23(10): 13626.

[2] Wei C C, Wu F M, Chen Z Y, et al.. Indoor VLC system with multiple LEDs of different path lengths employing space-time block-coded DMT/CAP modulation[J]. Journal of Optical Communications & Networking IEEE/OSA, 2015, 7(3): A459-A466.

[3] Lourenco N, Terra D, Kumar N, et al.. Visible light communication system for outdoor applications[C]. Communication Systems, Networks & Digital Signal Processing (CSNDSP), 2012 8th International Symposium on IEEE, 2012: 1-6.

[4] 刘建余, 于立娟. 短距离室外可见光数字传输系统研究[J]. 科学技术与工程, 2013, (3): 744-748.

    Liu Jianyu, Yu Lijuan. Research on short distance outdoor visible light digital transmission system[J]. Science Technology and Engineering, 2013, (3): 744-748.

[5] Kiasaleh K. Performance of APD-based, PPM free-space optical communication systems in atmospheric turbulence[J]. IEEE Transactions on Communications, 2005, 53(9): 1455-1461.

[6] 陈丹, 柯熙政, 李建勋. 湍流信道下无线光副载波盲均衡算法研究[J]. 光子学报, 2013, 42(9): 1025-1030.

    Chen Dan, Ke Xizheng, Li Jianxun. Blind equalization algorithm of wireless optical communication using subcarrier modulation over turbulence channel[J]. Acta Photonica Sinica, 2013, 42(9): 1025-1030.

[7] 宗康, 朱江. 基于Gamma-Gamma信道模型的ROFSO 通信系统性能分析[J]. 半导体光电, 2014, 35(4): 682-686.

    Zong Kang, Zhu Jiang. Performance analysis of ROFSO systems based on Gamma- Gamma atmospheric turbulence model[J]. Semiconductor Optoelectronics, 2014, 35(4): 682-686.

[8] Gappmair W, Muhammad S S. Error performance of PPM/poisson channels in turbulent atmosphere with Gamma-Gamma distribution [J]. Electronics Letters, 2007, 43(16): 880-882.

[9] 郭强. 改进的T-PPM 编码在大气弱湍流下的性能分析[J]. 激光与光电子学进展, 2014, 51(8): 080605.

    Guo Qiang. Performance analysis of improved T-PPM technology on atmospheric turbulence[J]. Laser & Optoelectronics Progress, 2014, 51(8): 080605.

[10] Berrou C, Glavieux A. Near optimum error correcting coding and decoding: Turbo-codes[J]. IEEE Transactions on Communications, 1996, 44(10): 1261-1271.

[11] Bayaki E, Schober R, Mallik R K. Performance analysis of MIMO free-space optical systems in Gamma-Gamma fading[J]. IEEE Transactions on Communications, 2009, 57(11): 3415-3424.

[12] Gradshteyn I S, Ryzhik I M. Table of Integrals, Series, and Products(8th Editon)[M]. Amsterdam: Elsevier, 2014: 1109-1114.

[13] Al-Habash M A, Andrews L C, Philips R L. Mathematical model for the irradiance probability density function of a laser beam propagating through turbulent media[J]. Optical Engineering, 2001, 40(8): 1554-1562.

[14] Uysal M, Li J, Yu M. Error rate performance analysis of coded free-space optical links over Gamma-Gamma atmospheric turbulence channels[J]. IEEE Transactions on Wireless Communications, 2006, 5(6): 1229-1233.

赵嘉琦, 许银帆, 李洁慧, 王一光, 迟楠. 强背景光下可见光大气湍流信道建模及分集接收技术[J]. 光学学报, 2016, 36(3): 0301001. Zhao Jiaqi, Xu Yinfan, Li Jiehui, Wang Yiguang, Chi Nan. Turbulence Channel Modeling of Visible Light Communication under Strong Background Noise and Diversity Receiving Technologies[J]. Acta Optica Sinica, 2016, 36(3): 0301001.

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