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Multiband Carrierless Amplitude Phase Modulation for High Capacity Optical Data Links

机译:用于高容量光数据链路的多频带无载波幅度相位调制

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摘要

Short range optical data links are experiencing bandwidth limitations making it very challenging to cope with the growing data transmission capacity demands. Parallel optics appears as a valid short-term solution. It is, however, not a viable solution in the long-term because of its complex optical packaging. Therefore, increasing effort is now put into the possibility of exploiting higher order modulation formats with increased spectral efficiency and reduced optical transceiver complexity. As these type of links are based on intensity modulation and direct detection, modulation formats relying on optical coherent detection can not be straight forwardly employed. As an alternative and more viable solution, this paper proposes the use of carrierless amplitude phase (CAP) in a novel multiband approach (MultiCAP) that achieves record spectral efficiency, increases tolerance towards dispersion and bandwidth limitations and reduces the complexity of the transceiver. We report on numerical simulations and experimental demonstrations with capacity beyond 100 Gb/s transmission using a single externally modulated laser (EML). In addition, an extensive comparison with conventional CAP is also provided. The reported experiment uses MultiCAP to achieve 102.4 Gb/s transmission, corresponding to a data payload of 95.2 Gb/s error free transmission by using a 7% forward error correction (FEC) code. The signal is successfully recovered after 15 km of standard single mode fiber (SSMF) in a system limited by a 3 dB bandwidth of 14 GHz.
机译:短距离光学数据链路正在经历带宽限制,使其难以应对日益增长的数据传输容量需求。并行光学器件是一种有效的短期解决方案。但是,由于其复杂的光学包装,从长远来看,这不是可行的解决方案。因此,现在加大了开发具有更高频谱效率和降低光收发器复杂性的更高阶调制格式的可能性。由于这些类型的链路基于强度调制和直接检测,因此不能直接采用依赖于光学相干检测的调制格式。作为一种替代且更可行的解决方案,本文提出了在新型多频带方法(MultiCAP)中使用无载波幅度相位(CAP)的方法,该方法可实现创纪录的频谱效率,增加对色散和带宽限制的容忍度并降低收发器的复杂性。我们使用单个外部调制激光(EML)报告了容量超过100 Gb / s传输的数值模拟和实验演示。此外,还提供了与常规CAP的广泛比较。报告的实验使用MultiCAP来实现102.4 Gb / s的传输,通过使用7%前向纠错(FEC)码,相当于95.2 Gb / s的无误传输的数据有效负载。在受14 GHz 3 dB带宽限制的系统中使用15 km的标准单模光纤(SSMF)后,可以成功恢复信号。

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