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Hybrid space-frequency domain pre-equalization for DC-biased optical orthogonal frequency division multiplexing based imaging multiple-input multiple-output visible light communication systems

机译:基于DC偏置光正交频分复用的成像多输入多输出可见光通信系统的混合空频域预均衡

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摘要

We propose a hybrid space-frequency domain pre-equalization technique for indoor multiple-input multiple-output visible light communication (MIMO-VLC) systems using DC-biased optical orthogonal frequency division multiplexing with an imaging receiver. The proposed hybrid space-frequency domain pre-equalization is jointly performed in both space and frequency domains for the purpose of achieving comparable signal-to-noise ratio performances of different channels in an imaging MIMO-VLC system. It is shown by the simulation results that a four-channel imaging MIMO-VLC system with a raw data rate of 1.2 Gb/s using hybrid space-frequency domain pre-equalization achieves significantly improved bit error rate performance than the system using only frequency domain pre-equalization, resulting in up to 52.6% improvement in communication coverage area at a target BER of 10~(-3).
机译:我们为室内多输入多输出可见光通信(MIMO-VLC)系统提出了一种混合空频域预均衡技术,该系统使用与成像接收器进行直流偏置的光正交频分复用。为了在成像MIMO-VLC系统中实现不同信道的可比信噪比性能,在空间和频域中共同执行所提出的混合空频域预均衡。仿真结果表明,与仅使用频域的系统相比,使用混合空频域预均衡的原始数据速率为1.2 Gb / s的四通道成像MIMO-VLC系统可显着提高误码率性能预均衡,在目标BER为10〜(-3)的情况下,通信覆盖面积最多可提高52.6%。

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