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Successive Decoding of Anti-Periodic OFDM Signals in IM/DD Optical Channel

机译:IM / DD光信道中反周期OFDM信号的连续解码

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This paper investigates Orthogonal Frequency- Division Multiplexing (OFDM) transmission in intensity modulated, direct-detected (IM/DD) optical systems. Due to the unipolarity of the IM/DD optical channel, DC biasing and associated nonlinear clipping distortion (NLCD) is inevitable, unless an anti-periodic signal is created by limiting bit loading to only half of the available bandwidth. To generalize this idea, we first provide a class of such signals generated with different subchannel combinations. Using the theoretical characterization of NLCD on these signals, we show that by parallel transmission and successive decoding, a set of anti-periodic OFDM signals can be transmitted simultaneously and recovered without a distortion penalty. The proposed method requires minimum change on the existing optical plant, and has the potential to achieve both high power and high spectral efficiencies.
机译:本文研究了强度调制直接检测(IM / DD)光学系统中的正交频分复用(OFDM)传输。由于IM / DD光通道的单极性,因此除非有通过将位负载限制为仅可用带宽的一半来创建反周期信号的方法,否则直流偏置和相关的非线性削波失真(NLCD)是不可避免的。为了概括这个想法,我们首先提供一类通过不同子信道组合生成的信号。使用NLCD在这些信号上的理论特性,我们表明通过并行传输和连续解码,可以同时传输和恢复一组反周期OFDM信号,而不会产生失真损失。所提出的方法需要在现有的光学设备上进行最小的改变,并且具有实现高功率和高光谱效率的潜力。

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