Challenges in Polybinary Modulation for Bandwidth Limited Optical Links

Vegas Olmos Jj, I. Monroy, P. Madsen, L. Suhr, B. Cimoli, T. Johansen, Zhurbenko
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引用次数: 6

Abstract

Optical links using traditional modulation formats are reaching a plateau in terms of capacity, mainly due to bandwidth limitations in the devices employed at the transmitter and receivers. Advanced modulation formats, which boost the spectral efficiency, provide a smooth migration path towards effectively increase the available capacity. Advanced modulation formats however require digitalization of the signals and digital signal processing blocks to both generate and recover the data. There is therefore a trade-off in terms of efficiency gain vs complexity. Polybinary modulation, a generalized form of partial response modulation, employs simple codification and filtering at the transmitter to drastically increase the spectral efficiency. At the receiver side, polybinary modulation requires low complexity direct detection and very little digital signal processing. This paper provides an overview of the current research status of the key building blocks in polybinary systems. The results clearly show how polybinary modulation effectively reduces the bandwidth requirements on optical links while providing high spectral efficiency.
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带宽受限光链路中多二进制调制的挑战
使用传统调制格式的光链路在容量方面正在达到平台期,主要是由于发射器和接收器所使用的设备的带宽限制。先进的调制格式提高了频谱效率,为有效增加可用容量提供了平滑的迁移路径。然而,先进的调制格式需要信号的数字化和数字信号处理模块来生成和恢复数据。因此,在效率增益与复杂性之间存在权衡。多二进制调制是部分响应调制的一种广义形式,它在发射端采用简单的编码和滤波来大幅提高频谱效率。在接收端,多二进制调制需要低复杂度的直接检测和很少的数字信号处理。本文综述了多二进制系统中关键构件的研究现状。结果清楚地显示了多二进制调制如何在提供高频谱效率的同时有效地降低了光链路的带宽要求。
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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