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Backbone MAC for energy-constrained wireless sensor networks

机译:能量受限的无线传感器网络的骨干MAC

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In this paper we propose a routing backbone construction mechanism that exploits and uses the synchronization messages exchanged by synchronized contention-based MAC protocols. Due to the usage of synchronization messages no additional control traffic is required to setup the routing backbone. Every node running a synchronized contention-based MAC protocol follows a given listen/sleep cycle. Because routing is supported by the backbone, non-backbone nodes can temporarily turn off their radios for multiple listen/sleep cycles. Thus, additional energy can be saved. Accordingly, non-backbone nodes do not have to wake up in every listen/sleep cycle to synchronize with other nodes, but wake up only if required, i.e., if they have to report some sensor readings to a base station. In this case, they synchronize to the backbone, send their data, and go back to sleep after successful transmission. Our approach is applicable to rather static networks with mainly source-to-sink traffic. Most monitoring applications are of this kind.
机译:在本文中,我们提出了一种路由骨干构造机制,该机制利用和使用由基于同步竞争的MAC协议交换的同步消息。由于使用了同步消息,因此不需要其他控制流量即可设置路由主干。运行基于同步竞争的MAC协议的每个节点都遵循给定的侦听/睡眠周期。由于骨干网支持路由,因此非骨干节点可以在多个侦听/睡眠周期中暂时关闭其无线电。因此,可以节省额外的能量。因此,非骨干节点不必在每个监听/睡眠周期中唤醒以与其他节点同步,而是仅在需要时唤醒,即,如果它们必须向基站报告一些传感器读数。在这种情况下,它们将同步到主干,发送数据,并在成功传输后返回睡眠状态。我们的方法适用于主要具有源到汇流量的静态网络。大多数监视应用程序都是这种类型的。

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