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Distributed SINR based Scheduling Algorithm for Multi-hop Wireless Networks

机译:基于分布式SINR的多跳无线网络调度算法

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摘要

The problem of developing high-performance distributed scheduling algorithms for multi-hop wireless networks has seen enormous interest in recent years. The problem is especially challenging when studied under a physical interference model, which requires the SINR at the receiver to be above a certain threshold for decoding success. Under such an SINR model, transmission failure may be caused by interference due to simultaneous transmissions from far away nodes, which exacerbates the difficulty in developing a distributed algorithm. In this paper, we propose a scheduling algorithm that exploits carrier sensing and show that the algorithm is not only amenable to distributed implementation, but also results in throughput optimality. Our algorithm has a feature called the "dual-state" approach, which separates the transmission schedules from the system state and can be shown to improve delay performance.
机译:近年来,为多跳无线网络开发高性能分布式调度算法的问题引起了极大的兴趣。当在物理干扰模型下进行研究时,该问题尤其具有挑战性,这需要接收机处的SINR高于某个阈值才能成功解码。在这种SINR模型下,传输失败可能是由于来自遥远节点的同时传输所造成的干扰而引起的,这加剧了开发分布式算法的难度。在本文中,我们提出了一种利用载波侦听的调度算法,并表明该算法不仅适用于分布式实现,而且还可以实现吞吐量优化。我们的算法具有一种称为“双状态”方法的功能,该功能将传输调度与系统状态分开,并可以提高延迟性能。

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