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Low-Complexity Distributed Algorithms for Spectrum Balancing in Multi-User DSL Network

机译:多用户DSL网络中的频谱平衡的低复杂性分布式算法

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Dynamic Spectrum Management of Digital Subscriber Lines (DSL) has the potential to dramatically increase the capacity of the aging last-mile copper access network. This paper takes an important step toward fulfilling this potential through power spectrum balancing. We derive a novel algorithm called SCALE, that provides a significant performance improvement over the existing iterative water-filling (IWF) algorithm in multi-user DSL networks, doing so with comparable low complexity. The algorithm is easily distributed through measurement and limited message-passing with the use of a Spectrum Management Center. We outline how overhead can be managed, and show that in the limit of zero message-passing, performance reduces to IWF. Numerical convergence of SCALE was found to be extremely fast when applied to VDSL, with performance exceeding that of iterative water-filling in just a few iterations, and to over 90% of the final rate in under 5 iterations. Lastly, we return to the problem of iterative water-filling and derive a new algorithm named SCAWF that is shown to be a very simple way to water-fill, particularly suited to the multi-user context.
机译:数字用户线(DSL)的动态频谱管理具有大量提高老化最后一英里铜接入网络的容量。本文通过功率谱平衡来实现这一潜力的重要一步。我们推出一种名为SCALE的新型算法,其在多用户DSL网络中的现有迭代水填充(IWF)算法上提供了显着的性能改进,因此具有相当的低复杂性。通过使用频谱管理中心,算法通过测量和有限的消息传递方式分发。我们概述了如何管理开销,并显示在零消息传递的限制下,性能降低到IWF。在应用于VDSL时,发现规模的数值收敛性极为快,性能超过少数迭代的迭代水填充,并且在5次迭代中的最终速率超过90%。最后,我们返回迭代水填充的问题,并推出一个名为SCAWF的新算法,被证明是一种非常简单的水填充方式,特别适用于多用户上下文。

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