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Fractionally spaced equalization in visible light communication

机译:可见光通信中的分数间隔均衡

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Visible light communication (VLC) utilizing white light emitting diode (LED) is considered as a strong candidate for the future lighting technology. The LEDs are distributed across the ceiling and have wide irradiance distribution for achieving adequate general lighting. But the bandwidth-limited LED channel and indoor multipath propagation delays cause severe inter-symbol interference (ISI). Bit error rate (BER) performance of the indoor visible light wireless system is degraded significantly when increasing the data rate. In this paper, we discuss about the equalization system using fractionally-spaced equalization (FSE) and evaluate its performance in a VLC system. As a result, the performance of FSE is superior to the equalizer with symbol interval sampling. Further more, this equalization method is suitable for a bandwidth-limited optical multipath channel.
机译:利用白光发光二极管(LED)的可见光通信(VLC)被认为是未来照明技术的强力候选者。 LED分布在整个天花板上,并具有宽广的辐照度分布,以实现足够的常规照明。但是带宽受限的LED通道和室内多径传播延迟会导致严重的符号间干扰(ISI)。当增加数据速率时,室内可见光无线系统的误码率(BER)性能会大大降低。在本文中,我们讨论了使用分数间隔均衡(FSE)的均衡系统,并评估了其在VLC系统中的性能。结果,FSE的性能优于带符号间隔采样的均衡器。此外,该均衡方法适用于带宽受限的光多径信道。

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