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A High-Speed Bi-Directional Visible Light Communication System Based on RGB-LED 被引量:4

A High-Speed Bi-Directional Visible Light Communication System Based on RGB-LED
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摘要 In this paper,we propose and experimentally demonstrate a bi-directional indoor communication system based on visible light RGB-LED.Spectrally efficient modulation formats(QAM-OFDM),advanced digital signal processing,pre- and postequalization are adopted to compensate the severe frequency response of indoor channel.In this system,we utilize red-green-blue Light emitting diodes(LEDs),of which each color can be used to carry different signals.For downlink,the low frequencies of each color are used while for uplink,the high frequencies are used.The overall data rate of downlink and uplink are 1.15-Gb/s and 300-Mb/s.The bit error ratios(BERs) for all channels after0.7 m indoor delivery are below pre-forwarderror-correction(pre-FEC) threshold of3.8×l0^(-3) To the best of our knowledge,this is the highest data rate in bi-directional visible light communication system. In this paper, we propose and experimentally demonstrate a bi-directional indoor communication system based on visible light RGB-LED. Spectrally efficient modulation formats (QAM-OFDM), advanced digital signal processing, pre- and post- equalization are adopted to compensate the severe frequency response of indoor channel. In this system, we utilize red-green-blue Light emitting diodes (LEDs), of which each color can be used to carry different signals. For downlink, the low frequencies of each color are used while for uplink, the high frequencies are used. The overall data rate of downlink and uplink are 1.15-Gb/s and 300-Mb/s. The bit error ratios (BERs) for all channels after 0.7 m indoor delivery are below pre-forward- error-correction (pre-FEC) threshold of 3.8×10-3. To the best of our knowledge, this is the highest data rate in bi-directional visible light communication system.
出处 《China Communications》 SCIE CSCD 2014年第3期40-44,共5页 中国通信(英文版)
基金 supported by the NNSF of China(No.61177071, No.61250018) the Key Program of Shanghai Science and Technology Association (12dz1143000)
关键词 光通信系统 数字信号处理 高数据速率 室内信道 下行链路 上行链路 发光二极管 比特误码率 visible light communication bi-directional transmission orthogonal frequencydivision multiplexing light emitting diode
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  • 1D. O'Brien, H. L. Minh, L. Zeng, G. Faulkner, K. Lee, D. Jung, Y. Oh, and E. T. Won, "Indoor visi- ble light communications: challenges and pros- pects," Proc. SPIE 7091~ 709 106-1 -709 106-9 (2008).
  • 2M. Zhang, Y. Zhang, X. Yuan, and J. Zhang, "Mathematic models for a ray tracing method and its applications in wireless optical com- munications," Opt. Express 18(17), 18431- 18437(2010).
  • 3A. M. Khalid, G. Cossu, R. Corsini, P. Choud- hury, and E. Ciaramella, "1-Gb/s Transmission Over a Phosphorescent White LED by Using Rate-Adaptive Discrete Multitone Modulation," IEEE Photon. J. 4(5), 1465-1473 (2012).
  • 4H. Le Minh, D. O'Brien, G. Faulkner, L. Zeng, K. Lee, D. Jung, and Y. J. Oh,"High-speed visible light communications using multiple-resonant equalization" IEEE Photon. Technol. Lett. 20(14), 1243-1245 (2008).
  • 5J. Vucic, C. Kottke, S. Nerreter, K. Langer, and J. W. Walewski, "513 Mbit/s visible light commu- nications link based on DMT-modulation of a white LED," J. Lightw. Technol. 28(24), -3512- 3518 (2010).
  • 6A. H. Azhar, T. Tran, and D. O Brien, "Demonstra- tion of high-speed data transmission using MI- MO-OFDM visible light communications," Proc. of Globecom Workshops, 1052-1056 (2010).
  • 7G. Cossu, A. M. Khalid, P. Choudhury, R. Corsi- ni, and E. Ciaramella, "3.4 Gbit/s visible optical wireless transmission based on RGB LED," Opt. Express 20(26), BS01-BS06 (2012).
  • 8T. Komine, S. Haruyama, and M. Nakagawa,"Bidirectional visible-light communication using corner cube modulator," IEIC Tech. Report 102, 41-46 (2003).
  • 9Y. F. Liu, C. H. Yeh, C. W. Chow, Y. Liu, Y. L. Liu, and H. K. Tsang, "Demonstration of bi-direction- al LED visible light communication using TDD traffic with mitigation of reflection interference;' Opt. Express 20(21 ),23019-23024 (2012).
  • 10Y. Wang, Y. Wang, N. Chi, J. Yu, and H. Shang, "Demonstration of 575-Mb/s downlink and 225-Mb/s uplink bi-directional SCM-WDM vis- ible light communication using RGB LED and phosphor-based LED," Opt. Express21(1), 1203- 1208(2013).

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