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An efficient solution offering sink mobility support in wireless sensor networks

机译:在无线传感器网络中提供宿移动性支持的有效解决方案

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The wireless sensor networks (WSNs) application scope has widened in recent years. For instance, the IEEE 802.15.4 technology allows establishing a mesh sensor network to support applications that increase the security of physical spaces, such as intruder detection, gas detection, and fire detection. In this paper, we focus on applications which require the support for mobility, including intruder detection and pursuit scenarios. Communications are based on the IEEE 802.15.4 standard due to its low power consumption, low latency and the ability to connect a large number of sensor nodes in a WSN. We propose the novel Mobile-sink Routing for Large Grids (MRLG) algorithm, which is intended to support sink mobility in a WSN. MRLG allows reducing the routing load by relying on local route recovery processes, which provides significant efficiency in scenarios with a large number of sensors. Experimental results show that, when compared to standard routing strategies based on sink announcements such as the Collection Tree Protocol (CTP), the performance of the MRLG algorithm is significantly boosted in terms of packet delivery ratio, end-to-end delay, and routing overhead.
机译:近年来,无线传感器网络(WSN)的应用范围已经扩大。例如,IEEE 802.15.4技术允许建立网格传感器网络,以支持提高物理空间安全性的应用程序,例如入侵者检测,气体检测和火灾检测。在本文中,我们重点介绍需要移动性支持的应用程序,包括入侵者检测和追踪方案。由于通信的低功耗,低延迟以及在WSN中连接大量传感器节点的能力,因此通信基于IEEE 802.15.4标准。我们提出了新颖的大网格移动接收器路由(MRLG)算法,旨在支持WSN中的接收器移动性。 MRLG可以依靠本地路由恢复过程来减少路由负载,这在具有大量传感器的情况下提供了显着的效率。实验结果表明,与基于接收器公告的标准路由策略(例如集合树协议(CTP))相比,MRLG算法的性能在数据包传递率,端到端延迟和路由方面得到了显着提高。高架。

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