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Faster-than-Nyquist non-orthogonal frequency-division multiplexing based on fractional Hartley transform

机译:基于分数哈特利变换的比奈奎斯特快的非正交频分复用

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In this Letter, we propose, to the best of our knowledge, the first faster-than-Nyquist non-orthogonal frequency-division multiplexing based on fractional Hartley transform (FrHT). Different from the existing NOFDM signal, the real-valued FrHT-based NOFDM signal can be directly applied to an intensity-modulated/direct-detection optical system without upconversion, and it can achieve a transmission rate faster than the Nyquist rate, which is the up limit of orthogonal frequency-division multiplexing. For example, when bandwidth compression factor a is set to 0.4, the transmission rate is 20 percent faster than the Nyquist rate. Furthermore, we demonstrate simulations and experiments to verify the feasibility of FrHT-based NOFDM. After a 25 km standard single-mode fiber transmission, the bit error rate of FrHT-based DC-offset NOFDM can achieve a 7% and 20% forward error correction limit when a is set to 0.45 and 0.4, respectively. (C) 2016 Optical Society of America
机译:在本信中,我们据我们所知提出了基于分数哈特利变换(FrHT)的第一个快于奈奎斯特的非正交频分复用。与现有的NOFDM信号不同,基于实值的基于FrHT的NOFDM信号可以直接应用于强度调制/直接检测光学系统,而无需上变频,并且可以实现比奈奎斯特速率更快的传输速率,这就是正交频分复用的上限例如,当带宽压缩系数a设置为0.4时,传输速率比奈奎斯特速率快20%。此外,我们演示了仿真和实验,以验证基于FrHT的NOFDM的可行性。在25 km标准单模光纤传输之后,将a分别设置为0.45和0.4时,基于FrHT的DC偏移NOFDM的误码率可以达到7%和20%的前向纠错极限。 (C)2016美国眼镜学会

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