A Novel Distributed Scheduling Algorithm for Wireless Mesh Networks

Yun Hou, K. Leung
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引用次数: 12

Abstract

Wireless multi-hop, mesh networks are being considered as a candidate to backhaul data traffic from access networks to the wired Internet. These mesh networks are referred to as wireless backhaul networks. Existing medium access control (MAC) protocols and scheduling algorithms are devised for wireless access. So although they have been adopted for the wireless backhaul networks, they do not yield good performance. In this paper, we propose a novel distributed scheduling algorithm, composed of a framework and a new utility function definition, for wireless backhaul networks. We show by analysis and simulation that in a long run the algorithm converges to the desired throughput allocation, which can be specified by the routing protocol in use to guarantee quality of service. Moreover, in terms of interference, we show that our framework maintains strong temporal correlation of interference, which is required to ensure proper channel predictions for scheduling gain and for distributed power control. Finally, simulation results reveal that the new algorithm takes advantage of the multi-user diversity in achieving high overall network throughput, when compared with the tree-structure algorithm.
一种新的无线网状网络分布式调度算法
无线多跳网状网络正被视为从接入网向有线互联网回程数据流量的候选网络。这些网状网络被称为无线回程网络。现有的介质访问控制(MAC)协议和调度算法是为无线接入而设计的。因此,尽管它们已被应用于无线回程网络,但它们的性能并不好。本文提出了一种新的分布式调度算法,该算法由一个框架和一个新的效用函数定义组成。通过分析和仿真表明,从长远来看,该算法收敛于期望的吞吐量分配,该吞吐量分配可以由所使用的路由协议指定,以保证服务质量。此外,在干扰方面,我们表明我们的框架保持了强的干扰时间相关性,这是确保调度增益和分布式功率控制的适当信道预测所必需的。最后,仿真结果表明,与树结构算法相比,新算法利用了多用户分集的优势,实现了较高的整体网络吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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