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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Throughput Optimizing Localized Link Scheduling for Multihop Wireless Networks under Physical Interference Model
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Throughput Optimizing Localized Link Scheduling for Multihop Wireless Networks under Physical Interference Model

机译:物理干扰模型下多跳无线网络的吞吐量优化局部链路调度

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摘要

We study throughput-optimum localized link scheduling in wireless networks. The majority of results on link scheduling assume binary interference models that simplify interference constraints in actual wireless communication. While the physical interference model reflects the physical reality more precisely, the problem becomes notoriously harder under the physical interference model. There have been just a few existing results on link scheduling under the physical interference model, and even fewer on more practical distributed or localized scheduling. In this paper, we tackle the challenges of localized link scheduling posed by the complex physical interference constraints. By integrating the partition and shifting strategies into the pick-and-compare scheme, we present a class of localized scheduling algorithms with provable throughput guarantee subject to physical interference constraints. The algorithm in the oblivious power setting is the first localized algorithm that achieves at least a constant fraction of the optimal capacity region subject to physical interference constraints. The algorithm in the uniform power setting is the first localized algorithm with a logarithmic approximation ratio to the optimal solution. Our extensive simulation results demonstrate performance efficiency of our algorithms.
机译:我们研究无线网络中吞吐量优化的本地化链路调度。有关链路调度的大多数结果都采用二进制干扰模型,该模型简化了实际无线通信中的干扰约束。虽然物理干扰模型可以更精确地反映物理现实,但是在物理干扰模型下,问题变得更加棘手。在物理干扰模型下,关于链路调度的现有结果很少,而在更实际的分布式或局部调度中却很少。在本文中,我们解决了复杂的物理干扰约束所带来的局部链路调度问题。通过将划分和转移策略集成到选择和比较方案中,我们提出了一类具有可证明的吞吐量保证且受物理干扰约束的本地化调度算法。遗忘功率设置中的算法是第一个本地化算法,该算法至少会获得受物理干扰约束的最佳容量区域的恒定部分。均方功率设置中的算法是第一个局部化算法,对最优解的对数近似比。我们广泛的仿真结果证明了我们算法的性能效率。

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