全双工状态交换无线网络的低复杂度调度算法

Weihe Wang, V. Subramanian, Dongning Guo
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引用次数: 1

摘要

在点对点无线网络中,高效的分布式调度算法通常要求所有活动节点获取各自邻居的状态信息,如队列长度等。然而,在没有无冲突调度的情况下,节点之间的信息交换是具有挑战性的,这主要是由于当今无线电的半双工设计。本文利用一种物理层技术来研究介质访问控制(MAC),该技术允许所有节点同时有效地与一跳邻居交换状态消息。针对两种干扰模型,提出了采用同步消息交换的低复杂度分布式调度算法。在节点互斥干扰模型下,其中一种算法产生的调度可由贪心最大调度算法实现。仿真结果表明,这两种算法都优于一些流行的分布式随机访问方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low complexity scheduling algorithms for wireless networks with full duplex state exchange
In a peer-to-peer wireless network, efficient distributed scheduling algorithms generally require all active nodes to acquire the state information of their respective neighbors, e.g., their queue lengths. However, information exchange between nodes is challenging in the absence of a collision-free schedule, mainly due to the half duplex design of today's radios. This paper studies medium access control (MAC) with the help of a physical layer technique that allows all nodes to efficiently exchange state messages with one-hop neighbors at the same time. Low-complexity distributed scheduling algorithms using simultaneous message exchange are proposed for two interference models. One of the algorithms is shown to produce schedules realizable by the greedy maximal scheduling algorithm under the node-exclusive interference model. Simulations demonstrate that both algorithms outperform some popular distributed random access schemes.
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