基于时域仿真的G.fast系统容量分析

Igor Almeida, A. Klautau, Chenguang Lu
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引用次数: 10

摘要

根据VDSL2的规定,使用铜网的不断发展的宽带接入系统目前部署在高达30 MHz的频段上。随着混合光纤-铜缆架构在工业界和学术界变得越来越重要,从最后一个分发点到用户使用更短的环路长度(即最多250米)可以采用更高的频率,以实现500mbps及以上的非常高的数据速率,ITU-T正在开发的G.fast标准就是这种情况。在这项工作中,开发了一个时域模拟器来评估G.fast系统的性能。采用ITU-T规定的不同循环延伸长度和不同参考环路拓扑来评估系统容量。仿真结果表明,G.fast系统对桥接具有鲁棒性,能够为所有模拟环路拓扑提供非常高的数据速率,以支持下一代超高速宽带服务。
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Capacity analysis of G.fast systems via time-domain simulations
The evolving broadband access systems using copper networks are currently deployed in a frequency band that goes up to 30 MHz, as specified in VDSL2. As hybrid fiber-copper architectures become more important in the industry and academia, using shorter loop lengths (i.e. up to 250 meters) from the last distribution point to users enables adopting even higher frequencies to achieve very high data rates of 500 Mbps and beyond, as is the case with the G.fast standard under development by ITU-T. In this work, a time-domain simulator has been developed to evaluate G.fast system performance. System capacity is evaluated with different cyclic extension lengths and different reference loop topologies specified by ITU-T. The simulation results show that G.fast systems are robust to bridgetaps and capable of providing very high data rates for all simulated loop topologies to support next generation ultra high speed broadband services.
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