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An Urn Occupancy Approach for Modeling the Energy Consumption of Distributed Beaconing

机译:一种用于分布式信标能耗建模的瓮占用方法

摘要

In past years, ultrawideband technology has attracted great attention from academia and industry for wireless personal area networks and wireless sensor networks. Maintenance of connectivity and exchange of data require an efficient way to manage the devices. Distributed beaconing defined by ECMA-368 is used to manage the network in fully distributed fashion. All the devices must acquire a unique beacon slot, with the beacon period accessed using a slotted Aloha scheme. In this paper, we study the efficiency of distributed beaconing in the presence of k newcomer devices forming a closed system. Efficiency is measured in terms of energy consumption and network setup delay. ECMA-368 defines two distinct phases: extension and contraction. Both phases are analyzed with particular emphasis on the extension phase by means of an absorbing Markov chain model. The main contributions of this paper are: 1) a systematic approach to model distributed beaconing by formulating two equivalent urn occupancy problems of the extension and contraction phases; 2) the use of exponential generating functions to obtain closed-form expressions of the transition probabilities of the absorbing Markov chain; and 3) comparison to computer simulations based on Opnet modeling and with the preexisting literature.
机译:在过去的几年中,超宽带技术已经引起了学术界和工业界对无线个人区域网和无线传感器网络的极大关注。维护连接性和交换数据需要一种有效的方法来管理设备。 ECMA-368定义的分布式信标设置用于以完全分布式的方式管理网络。所有设备必须获取唯一的信标时隙,并使用时隙Aloha方案访问信标周期。在本文中,我们研究了在k个新来者设备形成一个封闭系统的情况下分布式信标的效率。效率是根据能耗和网络建立延迟来衡量的。 ECMA-368定义了两个不同的阶段:伸展和收缩。通过吸收马尔可夫链模型对两个阶段进行了分析,其中特别强调了扩展阶段。本文的主要贡献是:1)通过制定两个在伸展和收缩阶段等效的骨灰占用问题,对分布式信标模型进行建模的系统方法; 2)使用指数生成函数来获得吸收马尔可夫链的转移概率的闭式表达式; 3)与基于Opnet建模的计算机模拟进行比较,并与现有文献进行比较。

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