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1-Gb/s Transmission Over a Phosphorescent White LED by Using Rate-Adaptive Discrete Multitone Modulation

机译:通过速率自适应离散多音调制在磷光白光LED上实现1 Gb / s的传输

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摘要

Light-emitting diodes (LEDs), which will be increasingly used in lighting technology, will also allow for distribution of broadband optical wireless signals. Visible-light communication (VLC) using white LEDs offers several advantages over the RF-based wireless systems, i.e., license-free spectrum, low power consumption, and higher privacy. Mostly, optical wireless can provide much higher data rates. In this paper, we demonstrate a VLC system based on a white LED for indoor broadband wireless access. After investigating the nonlinear effects of the LED and the power amplifier, a data rate of 1 Gb/s has been achieved at the standard illuminance level, by using an optimized discrete multitone modulation technique and adaptive bit- and power-loading algorithms. The bit-error ratio of the received data was $1.5cdot 10^{-3}$, which is within the limit of common forward error correction (FEC) coding. These results twice the highest capacity that had been previously obtained.
机译:发光二极管(LED)将越来越多地用于照明技术中,也将允许分配宽带光学无线信号。与基于RF的无线系统相比,使用白色LED的可见光通信(VLC)具有多个优势,即免许可证频谱,低功耗和更高的隐私性。通常,光学无线可以提供更高的数据速率。在本文中,我们演示了一种基于白光LED的VLC系统,用于室内宽带无线访问。在研究了LED和功率放大器的非线性影响之后,通过使用优化的离散多音频调制技术以及自适应位和功率加载算法,在标准照度水平上已达到1 Gb / s的数据速率。接收到的数据的误码率为$ 1.5cdot 10 ^ {-3} $,在公共前向纠错(FEC)编码的限制内。这些结果是以前获得的最高容量的两倍。

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