Distributed beacon scheduling for IEEE 802.15.4 cluster-tree topology

Nikumani Choudhury, Rakesh Matam
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引用次数: 8

Abstract

The IEEE 802.15.4 standard provides a synchronization mechanism for devices connected in a star network topology using beacons. The lack of it in peer-to-peer network topology restricts its use to non-beacon mode. Addressing this issue, few protocols have been proposed based on either centralized or distributed approach. Irrespective of the approach, the three major criterion to evaluate different schemes are utilization of time slots, transmission count, and scalability. Centralized schemes are shown to incur high overhead and are not scalable. In this paper, we propose two distributed beacon scheduling mechanism that better utilize the available time slots, incur fewer transmissions and are highly scalable. In addition, the proposed works also lower the number of beacon frame collisions that otherwise leads to orphan nodes. The analytical study of both the mechanisms is presented along with proof of concept through simulation. A Markov chain model is defined to understand the different states of channel during transmission of frames.
基于IEEE 802.15.4集群树拓扑的分布式信标调度
IEEE 802.15.4标准为星型网络拓扑中使用信标连接的设备提供了一种同步机制。点对点网络拓扑结构中缺乏信标,限制了其在非信标模式中的使用。为了解决这个问题,很少有基于集中式或分布式方法的协议被提出。无论采用哪种方法,评估不同方案的三个主要标准是时隙利用率、传输计数和可扩展性。集中式方案会产生很高的开销,并且不可扩展。在本文中,我们提出了两种分布式信标调度机制,以更好地利用可用时隙,产生更少的传输和高度可扩展性。此外,所提出的工作还降低了导致孤立节点的信标帧冲突的数量。对这两种机制进行了分析研究,并通过仿真验证了概念。定义了马尔可夫链模型来理解帧传输过程中信道的不同状态。
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