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System design of reverse-powered G.fast

机译:反向供电G.fast的系统设计

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The continued growth of multimedia traffic pushes access network operators to further boost performance over their copper infrastructure network. As a result, digital subscriber line technology has evolved substantially. Field and lab trials have proven that recent innovations, such as crosstalk cancellation and phantom mode transmission, can push data rates of VDSL2 higher than 100 Mb/s on a single twisted pair and 300 Mb/s on two pairs. In ITU-T Q4, a new access technology to provide aggregate data rates in the range of 500 Mb/s to 1 Gb/s per copper loop of up to a few hundred meters is being defined under the G.fast project. G.fast enables the continued cost-effective deployment of fiber in the access network. In this paper, we give an overview of some key challenges this new access technology needs to overcome. By taking into account the expected access network topology, we give guidelines for the node architecture and deployment of G.fast.
机译:多媒体流量的持续增长促使接入网运营商通过其铜缆基础设施网络进一步提高性能。结果,数字用户线技术已经有了很大的发展。现场和实验室试验已经证明,诸如串扰消除和幻像模式传输之类的最新创新可以使VDSL2的数据速率在单双绞线上达到100 Mb / s以上,在两对双绞线上达到300 Mb / s以上。在ITU-T Q4中,G.fast项目定义了一种新的访问技术,该技术可为每个长达数百米的铜环提供500 Mb / s至1 Gb / s的聚合数据速率。 G.fast支持在接入网络中继续经济高效地部署光纤。在本文中,我们概述了这种新的访问技术需要克服的一些关键挑战。通过考虑预期的接入网络拓扑,我们为G.fast的节点体系结构和部署提供了指导。

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