Receiver Sensitivity Improvement of Layered-ACO-OFDM System Enabled by Layered-DFT/OCT Precoding Technique

Gang Liu, Miao Peng, Cuiwei Liu, Ming Chen, Hui Zhou, Qinghui Chen
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Abstract

Layered asymmetrically clipped optical orthogonal frequency-division multiplexing (L-ACO-OFDM) is power and spectral efficient scheme for intensity-modulation and direct-detection systems. However, the non-flat signal-to-noise ratio (SNR) condition over OFDM subcarriers due to the non-perfect frequency responses of devices and optical fiber link will degrade the bit error ratio (BER) performance. Furthermore, the errors will propagate to the higher layers during the L-ACO-OFDM demodulation. As a result, the receiver sensitivity of L-ACO-OFDM systems will be reduced. In this paper, the layered precoding technique is applied to the L-ACO-OFDM system to average SNR over OFDM subcarriers separately in each layer. The numerical simulations show that both layered discrete Fourier transform (DFT) and layered orthogonal circulant matrix transform (OCT) precoded L-ACO-OFDM systems have a similar receiver sensitivity, but have better receiver sensitivity than the uncoded L-ACO-OFDM system at a BER of 1e-3.
采用分层dft /OCT预编码技术提高分层aco - ofdm系统接收机灵敏度
层状非对称剪切光正交频分复用(L-ACO-OFDM)是一种功率和频谱效率高的强度调制和直接检测系统方案。然而,由于设备和光纤链路的频率响应不完美,OFDM子载波上的信噪比(SNR)不平坦,会降低误码率(BER)性能。此外,在L-ACO-OFDM解调过程中,误差将传播到更高的层。这将降低L-ACO-OFDM系统的接收机灵敏度。本文将分层预编码技术应用于L-ACO-OFDM系统,在每一层分别平均OFDM子载波上的信噪比。数值模拟结果表明,分层离散傅里叶变换(DFT)和分层正交循环矩阵变换(OCT)预编码的L-ACO-OFDM系统具有相似的接收灵敏度,但在BER为1e-3时,接收灵敏度优于未编码的L-ACO-OFDM系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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