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Layered ACO-OFDM for intensity-modulated direct-detection optical wireless transmission

机译:分层aCO-OFDm用于强度调制直接检测光无线传输

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摘要

Layered asymmetrically clipped optical orthogonal frequency division multiplexing (ACO-OFDM) with high spectral efficiency is proposed in this paper for optical wireless transmission employing intensity modulation with direct detection. In contrast to the conventional ACO-OFDM, which only utilizes odd subcarriers for modulation, leading to an obvious spectral efficiency loss, in layered ACO-OFDM, the subcarriers are divided into different layers and modulated by different kinds of ACO-OFDM, which are combined for simultaneous transmission. In this way, more subcarriers are used for data transmission and the spectral efficiency is improved. An iterative receiver is also proposed for layered ACO-OFDM, where the negative clipping distortion of each layer is subtracted once it is detected so that the signals from different layers can be recovered. Theoretical analysis shows that the proposed scheme can improve the spectral efficiency by up to 2 times compared with conventional ACO-OFDM approaches with the same modulation order. Meanwhile, simulation results confirm a considerable signal-to-noise ratio gain over ACO-OFDM at the same spectral efficiency.
机译:本文提出了一种具有高频谱效率的分层不对称限幅光正交频分复用(ACO-OFDM),用于采用强度调制和直接检测的光无线传输。与仅使用奇数子载波进行调制,从而导致明显的频谱效率损失的常规ACO-OFDM相比,在分层ACO-OFDM中,子载波被划分为不同的层并由不同种类的ACO-OFDM进行调制,分别是结合用于同时传输。这样,更多的子载波被用于数据传输,并且频谱效率得以提高。还提出了用于分层ACO-OFDM的迭代接收机,其中,一旦检测到每一层的负削波失真,就将其减去,从而可以恢复来自不同层的信号。理论分析表明,与具有相同调制阶数的传统ACO-OFDM方法相比,该方案可以将频谱效率提高多达2倍。同时,仿真结果证实了在相同频谱效率下,ACO-OFDM具有显着的信噪比增益。

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