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Unlocking Spectral Efficiency in Intensity Modulation and Direct Detection Systems

机译:在强度调制和直接检测系统中释放光谱效率

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摘要

A number of inherently unipolar orthogonal frequency division multiplexing (OFDM) modulation schemes have been introduced recently in an attempt to improve the energy efficiency of OFDM-based intensity modulation and direct detection (IM/DD) systems. All such algorithms, including asymmetrically clipped optical OFDM (ACO-OFDM), pulse-amplitude-modulated discrete multitone modulation (PAM-DMT) and unipolar orthogonal frequency division multiplexing (U-OFDM), experience an inherent loss in spectral efficiency caused by the restrictions imposed on the OFDM frame structure required for the generation of a unipolar signal. The current paper presents a modified modulation approach, termed enhanced U-OFDM (eU-OFDM), which compensates the spectral efficiency loss in U-OFDM. At the same time, it still allows for the generation of an inherently unipolar modulation signal that achieves better performance in terms of both electrical power and optical power dissipation compared to the conventional state-of-the-art technique direct current (DC)-biased optical OFDM (DCO-OFDM). To the best of the authors' knowledge, the current work also presents the first experimental proof-of-concept demonstration of both U-OFDM and eU-OFDM, and clearly demonstrates the significant energy advantages that these two schemes can introduce in an optical wireless communications (OWC) system.
机译:最近已经引入了许多固有的单极性正交频分复用(OFDM)调制方案,以试图提高基于OFDM的强度调制和直接检测(IM / DD)系统的能量效率。所有这些算法,包括非对称削波光学OFDM(ACO-OFDM),脉冲幅度调制离散多音调制(PAM-DMT)和单极正交频分复用(U-OFDM),都会因频谱效率而固有地损失。对产生单极性信号所需的OFDM帧结构施加的限制。当前的论文提出了一种改进的调制方法,称为增强型U-OFDM(eU-OFDM),它可以补偿U-OFDM中的频谱效率损失。同时,与传统的直流偏置技术相比,它仍然允许生成固有的单极性调制信号,从而在电功率和光功率耗散方面实现更好的性能。光学OFDM(DCO-OFDM)。据作者所知,当前的工作还展示了U-OFDM和eU-OFDM的第一个实验性概念验证演示,并清楚地展示了这两种方案可以在光无线中引入的巨大能源优势。通信(OWC)系统。

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