Orthogonal chirp division multiplexing for coherent optical fiber communications
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机译:正交线性调频除法复用用于相干光纤通信
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摘要
In this paper, we propose an orthogonal chirp division multiplexing (OCDM) technique for coherent optical communication. OCDM is the principle of orthogonally multiplexing a group of linear chirped waveforms for high-speed data communication, achieving the maximum spectral efficiency (SE) for chirp spread spectrum, in a similar way as the orthogonal frequency division multiplexing (OFDM) does for frequency division multiplexing. In the coherent optical (CO)-OCDM, Fresnel transform formulates the synthesis of the orthogonal chirps; discrete Fresnel transform (DFnT) realizes the CO-OCDM in the digital domain. As both the Fresnel and Fourier transforms are trigonometric transforms, the CO-OCDM can be easily integrated into the existing CO-OFDM systems. Analyses and numerical results are provided to investigate the transmission of CO-OCDM signals over optical fibers. Moreover, experiments of 36-Gbit/s CO-OCDM signal are carried out to validate the feasibility and confirm the analyses. It is shown that the CO-OCDM can effectively compensate the dispersion and is more resilient to fading and noise impairment than OFDM.
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机译:在本文中,我们提出了一种用于相干光通信的正交线性调频复用技术(OCDM)。 OCDM是正交复用一组线性线性调频波形以进行高速数据通信,达到线性调频扩频的最大频谱效率(SE)的原理,类似于正交频分复用(OFDM)进行频分的方式多路复用。在相干光学(CO)-OCDM中,菲涅耳变换可公式化正交chi的合成。离散菲涅耳变换(DFnT)在数字域中实现CO-OCDM。由于菲涅耳变换和傅立叶变换都是三角变换,因此CO-OCDM可以轻松集成到现有的CO-OFDM系统中。提供分析和数值结果以研究CO-OCDM信号在光纤上的传输。此外,还进行了36Gbit / s CO-OCDM信号的实验,以验证可行性并确认分析结果。结果表明,与OFDM相比,CO-OCDM可以有效地补偿色散,并且在衰落和噪声损害方面更具弹性。
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