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Maximal Scheduling in Wireless Ad Hoc Networks With Hypergraph Interference Models

机译:具有超图干扰模型的无线自组织网络中的最大调度

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摘要

This paper proposes a hypergraph interference model for the scheduling problem in wireless ad hoc networks. The proposed hypergraph model can take the sum interference into account and, therefore, is more accurate as compared with the traditional binary graph model. Further, different from the global signal-to-interference-plus-noise ratio (SINR) model, the hypergraph model preserves a localized graph-theoretic structure and, therefore, allows the existing graph-based efficient scheduling algorithms to be extended to the cumulative interference case. Finally, by adjusting certain parameters, the hypergraph can achieve a systematic tradeoff between the interference approximation accuracy and the user node coordination complexity during scheduling. As an application of the hypergraph model, we consider the performance of a simple distributed scheduling algorithm, i.e., maximal scheduling, in wireless networks. We propose a lower bound stability region for any maximal scheduler and show that it achieves a fixed fraction of the optimal stability region, which depends on the interference degree of the underlying hypergraph. We also demonstrate the interference approximation accuracy of hypergraphs in random networks and show that hypergraphs with small hyperedge sizes can model the interference quite accurately. Finally, the analytical performance is verified by simulation results.
机译:针对无线自组网中的调度问题,提出了一种超图干扰模型。所提出的超图模型可以考虑总和干扰,因此与传统的二元图模型相比更加准确。此外,不同于全局信号干扰加噪声比(SINR)模型,超图模型保留了局部图论结构,因此允许将基于图的有效调度算法扩展到累积干扰案件。最后,通过调整某些参数,超图可以在调度过程中在干扰近似精度和用户节点协调复杂度之间实现系统的折衷。作为超图模型的一种应用,我们考虑了无线网络中简单的分布式调度算法(即最大调度)的性能。我们为任何最大调度程序提出了一个下界稳定区域,并表明它实现了最佳稳定区域的固定分数,这取决于基础超图的干扰程度。我们还证明了随机网络中超图的干扰逼近精度,并显示了具有较小超边尺寸的超图可以非常准确地建模干扰。最后,通过仿真结果验证了分析性能。

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