如何唤醒你的邻居:无线网络的安全和近乎最佳的通用节能

Varsha Dani, Thomas P. Hayes
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引用次数: 5

摘要

最近的研究表明,通过在不需要的时候自适应地关闭无线电接收器,有时可以显著减少某些无线电网络算法的能量消耗。虽然过去的工作主要集中在以这种方式修改特定的网络算法,但我们现在提出的问题是,是否可以用一种通用的方式解决这个问题,将算法视为一种黑箱。我们能够肯定地回答这个问题,提出了一种新的通用方法来修改任意无线网络算法,以试图节省能源。以时间复杂度的小幅增加为代价,我们可以证明在某一类通用算法中可以将能量使用降低到接近最优的程度。作为一个应用,我们表明我们的算法降低了无线电网络中宽度优先搜索的能量成本,从先前的最佳界$2^{O(\sqrt{\log n})}$到$\mathrm{polylog}(n)$,其中$n$是网络中的节点数。我们算法的关键成分是基于在多尺度上进行的加性Voronoi分解的分层聚类。类似的聚类算法已被用于无线电网络中能量感知计算的其他近期工作,但我们认为这里提出的具体方法可能具有独立的兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How to Wake Up Your Neighbors: Safe and Nearly Optimal Generic Energy Conservation in Radio Networks
Recent work has shown that it is sometimes feasible to significantly reduce the energy usage of some radio-network algorithms by adaptively powering down the radio receiver when it is not needed. Although past work has focused on modifying specific network algorithms in this way, we now ask the question of whether this problem can be solved in a generic way, treating the algorithm as a kind of black box. We are able to answer this question in the affirmative, presenting a new general way to modify arbitrary radio-network algorithms in an attempt to save energy. At the expense of a small increase in the time complexity, we can provably reduce the energy usage to an extent that is provably nearly optimal within a certain class of general-purpose algorithms. As an application, we show that our algorithm reduces the energy cost of breadth-first search in radio networks from the previous best bound of $2^{O(\sqrt{\log n})}$ to $\mathrm{polylog}(n)$, where $n$ is the number of nodes in the network A key ingredient in our algorithm is hierarchical clustering based on additive Voronoi decomposition done at multiple scales. Similar clustering algorithms have been used in other recent work on energy-aware computation in radio networks, but we believe the specific approach presented here may be of independent interest.
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