On power-efficient usage of line drivers in copper-based access networks

M. Guenach, C. Nuzman, K. Hooghe, J. Maes, M. Peeters
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引用次数: 7

Abstract

Recently, it has been shown that spectral optimization in copper access networks can significantly reduce the transmit power required, resulting in significant reductions in the line driver energy consumption. Building on these results, we develop an improved model for line driver power usage which focuses on the aggregate transmit power, the supply voltage, and on constraints that connect these two. We show that an ideally tuned supply voltage can save significant power relative to a fixed supply voltage. Much of these gains may be achievable with a small set of discrete supply voltage options. The line driver model is simple enough to incorporate into a full spectral optimization framework, in which line driver power usage and rate are traded-off in a utility-based optimization framework. Benefits of power supply tuning in combination with spectral optimization are illustrated in numerical examples.
基于铜的接入网中线路驱动器的节能使用
最近,已有研究表明,铜接入网中的频谱优化可以显著降低所需的发射功率,从而显著降低线路驱动器的能耗。在这些结果的基础上,我们开发了一个改进的线路驱动器功率使用模型,该模型侧重于总发射功率、供电电压以及连接这两者的约束。我们证明了一个理想的调谐电源电压相对于一个固定的电源电压可以节省显著的功率。这些增益中的大部分可以通过一组小的离散电源电压选项来实现。线路驱动器模型非常简单,可以合并到全频谱优化框架中,其中线路驱动器的功率使用和速率在基于效用的优化框架中进行权衡。通过数值算例说明了电源调谐与频谱优化相结合的好处。
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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