...
【24h】

High-capacity undersea long-haul systems

机译:大容量海底远程系统

获取原文
获取原文并翻译 | 示例

摘要

This paper reviews technologies and techniques that have been used in deployed long-haul wavelength division multiplexing (WDM) systems and emerging technologies that could be used for the next generation of cost-reduced systems. The overview of current generation technologies starts with a discussion of modulation formats, focusing on the superior properties of the chirped return to zero on-off shift keying (CRZ-OOK) modulation format. The use of 10-Gb/s CRZ-OOK modulation format together with advanced fiber types, more powerful forward error correction (FEC), and broadband erbium-doped fiber amplifiers resulted in the deployment of dense WDM systems with capacities per fiber in terabits per second range and trans-Pacific reach. Demand for the systems with large design capacity led to further development of broadband optical amplifiers. Laboratory demonstrations successfully expanded transmission into the full C-band and later in the C and L transmission bands. The current market conditions dictate the need for reducing the first cost of an installed system rather than reaching record capacity per fiber. Reducing first cost can be achieved by reducing the amount of optical amplifiers in the cable by utilizing an excess performance margin provided by available RZ-OOK technology. Further improvements would be possible if more powerful FEC and modulation formats with better receiver sensitivity are used. For example, the RZ differential phase-shift keying (RZ-DPSK) modulation format with 3-dB better receiver sensitivity and better nonlinear tolerance to large amounts of accumulated dispersion is a very promising technology. This paper will review long-haul transmission results using RZ-DPSK and will compare the transmission properties of RZ-DPSK signals versus RZ-OOK signals. Due to superior receiver sensitivity, the RZ-DPSK modulation format can be an enabling technology for 40-Gb/s per channel transoceanic transmission.
机译:本文回顾了已部署的远程波分复用(WDM)系统中使用的技术和技术以及可用于下一代低成本系统的新兴技术。当前技术的概述首先讨论调制格式,重点是the归零归零开关键控(CRZ-OOK)调制格式的优越性能。 10 Gb / s CRZ-OOK调制格式与先进的光纤类型,更强大的前向纠错(FEC)和宽带掺-光纤放大器的结合使用,导致部署了密集的WDM系统,每条光纤的容量为每兆兆比特。第二范围和跨太平洋范围。对具有大设计容量的系统的需求导致了宽带光放大器的进一步发展。实验室演示成功地将传输扩展到整个C频段,然后扩展到C和L传输频段。当前的市场状况表明需要降低已安装系统的第一成本,而不是达到创纪录的每根光纤容量。通过利用可用的RZ-OOK技术提供的过剩性能余量来减少电缆中的光放大器数量,可以降低第一成本。如果使用功能更强大的FEC和具有更好接收灵敏度的调制格式,则可能会进一步改进。例如,RZ差分相移键控(RZ-DPSK)调制格式具有3dB的更好的接收器灵敏度和更好的对大量累积色散的非线性容限,是一项非常有前途的技术。本文将回顾使用RZ-DPSK进行的远程传输结果,并将比较RZ-DPSK信号与RZ-OOK信号的传输特性。由于出色的接收器灵敏度,RZ-DPSK调制格式可以成为每通道40 Gb / s跨洋传输的使能技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号