Lowery Arthur James
Opt Express. 2016 Feb 22;24(4):3950-66. doi: 10.1364/OE.24.003950.
Asymmetrically clipped optical orthogonal frequency-division multiplexing (ACO-OFDM) is a technique that sacrifices spectral efficiency in order to transmit an orthogonally frequency-division multiplexed signal over a unipolar channel, such as a directly modulated direct-detection fiber or free-space channel. Several methods have been proposed to regain this spectral efficiency, including: asymmetrically clipped DC-biased optical OFDM (ADO-OFDM), enhanced U-OFDM (EU-OFDM), spectral and energy efficient OFDM (SEE-OFDM), Hybrid-ACO-OFDM and Layered-ACO-OFDM. This paper presents simulations up to high-order constellation sizes to show that Layered-ACO-OFDM offers the highest receiver sensitivity for a given optical power at spectral efficiencies above 3 bit/s/Hz. For comparison purposes, white Gaussian noise is added at the receiver, component nonlinearities are not considered, and the fiber is considered to be linear and dispersion-less. The simulations show that LACO-OFDM has a 7-dB sensitivity advantage over DC-biased OFDM (DCO-OFDM) for 1024-QAM at 87.5% of DCO-OFDM's spectral efficiency, at the same bit rate and optical power. This is approximately equivalent to a 4.4-dB advantage at the same spectral efficiency of 87.7% if 896-QAM were to be used for DCO-OFDM.
非对称限幅光正交频分复用(ACO-OFDM)是一种为了在单极性信道(如直接调制直接检测光纤或自由空间信道)上传输正交频分复用信号而牺牲频谱效率的技术。已经提出了几种方法来恢复这种频谱效率,包括:非对称限幅直流偏置光OFDM(ADO-OFDM)、增强型U-OFDM(EU-OFDM)、频谱和能量高效OFDM(SEE-OFDM)、混合ACO-OFDM和分层ACO-OFDM。本文给出了高达高阶星座图大小的仿真结果,以表明在频谱效率高于3 bit/s/Hz时,对于给定的光功率,分层ACO-OFDM具有最高的接收机灵敏度。为了进行比较,在接收机处添加了高斯白噪声,未考虑组件非线性,并且认为光纤是线性且无色散的。仿真结果表明,在相同比特率和光功率下,对于1024-QAM,分层ACO-OFDM(LACO-OFDM)在达到直流偏置OFDM(DCO-OFDM)频谱效率的87.5%时,比DCO-OFDM具有7 dB的灵敏度优势。如果DCO-OFDM使用896-QAM,在相同频谱效率87.7%时,这大约相当于4.4 dB的优势。