High-speed visible light communication based on LED

被引:0
|
作者
Chi N. [1 ]
Lu X. [1 ]
Wang C. [1 ]
Zhou Y. [1 ]
机构
[1] Department of Communication Science and Engineering, School of Information Science and Technology, Fudan University, Shanghai
来源
| 1600年 / Science Press卷 / 44期
关键词
Advanced modulation; High-speed visible light communication; Light emitting diode; Optical communications; Post-equalization; Pre-equalization;
D O I
10.3788/CJL201744.0300001
中图分类号
学科分类号
摘要
By the year of 2018, the popularizing rate of common light emitting diode (LED) will reach 80%. The visible light communication (VLC) technology based on LED is expected to provide new scheme for the implementation of high-speed VLC. Researchers at home and aboard have studied technologies of modulation, coding or equalization and multiplexing, materials and chips in order to broaden the modulation bandwidth, improve the transmission rate and increase the transmission distance. The international research hotspots are analyzed and discussed, including technologies of carrier amplitude-phase modulation, orthogonal frequency division multiplexing modulation with adaptive bit power loading, hardware or software pre-equalization and post-equalization, and the principle and the performance of novel optical material. The latest researches are summarized in order to offer a reference for the future research of VLC. © 2017, Chinese Lasers Press. All right reserved.
引用
下载
收藏
页数:12
相关论文
共 32 条
  • [1] Tanaka Y., Haruyama S., Nakagawa M., Wireless optical transmissions with white colored LED for wireless home links, The 11th IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, (2000)
  • [2] Conti J.P., What you see is what you send, Engineering & Technology, 11, pp. 66-67, (2008)
  • [3] Kottke C., Habel K., Grobe L., Et al., Single-channel wireless transmission at 806 Mbit/s using a white-light LED and a PIN-based receiver, 14th IEEE International Conference on Transparent Optical Networks, (2012)
  • [4] Khalid A.M., Cossu G., Corsini R., Et al., 1-Gb/s transmission over a phosphorescent white LED by using rate-adaptive discrete multitone modulation, IEEE Photonics Journal, 4, 5, pp. 1465-1473, (2012)
  • [5] Le Minh H., O'Brien D., Faulkner G., Et al., 100-Mb/s NRZ visible light communications using a postequalized white LED, IEEE Photonics Technology Letters, 21, 15, pp. 1063-1065, (2009)
  • [6] Azhar A.H., Tran T.A., O'Brien D., Demonstration of high-speed data transmission using MIMO-OFDM visible light communications, IEEE Globecom Workshops, (2010)
  • [7] Vucic J., Kottke C., Habel K., Et al., 803 Mbit/s visible light WDM link based on DMT modulation of a single RGB LED luminary, Optical Fiber Communication Conference, (2011)
  • [8] Azhar A.H., Tran T.A., O'Brien D., Demonstration of high-speed data transmission using MIMO-OFDM visible light communications, IEEE Globecom Workshops, (2010)
  • [9] Haigh P.A., Chvojka P., Zvanovec S., Et al., Experimental verification of visible light communications based on multi-band CAP modulation, Optical Fiber Communication Conference, (2015)
  • [10] Wu F.M., Lin C.T., Wei C.C., Et al., 3.22-Gb/s WDM visible light communication of a single RGB LED employing carrier-less amplitude and phase modulation, Optical Fiber Communication Conference, (2013)