A Study of Shadowing on Indoor Visible-Light Wireless Communication Utilizing Plural White LED Lightings

被引:15
作者
Toshihiko Komine
Shinichiro Haruyama
Masao Nakagawa
机构
[1] Keio University,Department of Information and Computer Science, Faculty of Science and Technology
来源
Wireless Personal Communications | 2005年 / 34卷
关键词
optical wireless communication; visible-light; white LED; shadowing;
D O I
暂无
中图分类号
学科分类号
摘要
White LED is considered as a strong candidate for the future lighting technology. We have proposed an optical wireless communication system that employs white LEDs for indoor wireless networks. In this system, LED is used not only as a lighting device, but also as a communication device. The transmitter has large optical power and large emission characteristics to function as lighting device. And the system has specific wireless channel impulse response differing from infrared wireless communication. In this paper, we discuss about shadowing effect on the system utilizing plural LED lightings including the performance of ISI based on the impulse response. We consider the downlink transmission based on TDMA and evaluate the shadowing effect caused by pedestrians with computer simulation. When the shadowing often occurs at 800 Mb/s, the performance of outage call duration rate and blocking rate are improved by using 3 LED lightings compared with 1 or 2 LED lightings. And, we show that the system with the optimal number of the LED lighting is robust against shadowing and can accommodate more calls.
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页码:211 / 225
页数:14
相关论文
共 22 条
  • [1] Kuo C.P.(1990)High Performance ALGaInP Visible Light-Emitting Diodes Applied Physics Letters 57 2937-2939
  • [2] Fletcher R.M.(August 2003)Indoor Visible Light Transmission System Utilizing White LED Lights IEICE Transactions on Communications E86-B 2440-2454
  • [3] Osentowski T.D.(February 2003)Integrated System of White LED Visible-Light Communication and Power-Line Communication IEEE Transactions on Consumer Electronics 49 71-79
  • [4] Lardizabal M.C.(November 1979)Wireless In-House Data Communication via Diffuse Infrared Radiation Proc. IEEE 67 1474-1486
  • [5] Craford M.G.(February 1997)Wireless Infrared Communications Proc. of the IEEE 85 265-298
  • [6] Robbins V.M.(November 1993)Channel Cost of Mobility IEEE Transactions on Vehicular Technology 42 414-424
  • [7] Tanaka Y.(May 2000)Effects of Shadowing on Non-Directed LOS Indoor Infrared Wireless Systems with Site Diversity Proc. IEEE Vehicular Technology Conference – Spring 2 1550-1554
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