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Decentralized Network-Level Synchronization in Mobile Ad Hoc Networks

机译:移动自组织网络中的分散式网络级同步

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Energy is the scarcest resource in ad hoc wireless networks, particularly in wireless sensor networks requiring a long lifetime. Intermittently switching the radio on and off is widely adopted as the most effective way to keep energy consumption low. This, however, prevents the very goal of communication, unless nodes switch their radios on at synchronized intervals-a rather nontrivial coordination task. In this article, we address the problem of synchronizing node radios to a single universal schedule in wireless mobile ad hoc networks that can potentially consist of thousands of nodes. More specifically, we are interested in operating the network with duty cycles that can be less than 1% of the total cycle time. We identify the fundamental issues that govern cluster merging and provide a detailed comparison of various policies using extensive simulations based on a variety of mobility patterns. We propose a specific scheme that allows a 4,000-node network to stay synchronized with a duty cycle of approximately 0.7%. Our work is based on an existing, experimental MAC protocol that we use for real-world applications and is validated in a real network of around 120 mobile nodes.
机译:能源是临时无线网络中最稀缺的资源,尤其是在需要较长使用寿命的无线传感器网络中。间歇性地打开和关闭无线电是降低能耗的最有效方法。但是,这阻止了通信的真正目的,除非节点以同步的间隔打开其无线电设备,这是一项非常重要的协调任务。在本文中,我们解决了在可能包含数千个节点的无线移动自组织网络中将节点无线电同步到单个通用调度的问题。更具体地说,我们对以小于总循环时间的1%的占空比运行网络感兴趣。我们确定了控制群集合并的基本问题,并使用了基于各种移动性模式的广泛模拟,对各种策略进行了详细的比较。我们提出了一种特定的方案,该方案允许4,000个节点的网络以约0.7%的占空比保持同步。我们的工作基于现有的实验性MAC协议,该协议用于现实世界的应用程序,并在大约120个移动节点的真实网络中得到了验证。

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