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Enabling Mobility in Heterogeneous Wireless Sensor Networks Cooperating with UAVs for Mission-Critical Management

机译:在异构无线传感器网络中实现移动性与无人机协作以实现关键任务管理

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摘要

Wireless sensor networks have the promise of revolutionizing the capture, processing, and communication of mission-critical data for the use of first operational forces. Their low cost, low power, and size make it feasible to embed them into environment monitoring tags in critical care regions, first responders uniform gear, and data collector sinks attached to unmanned aerial vehicles. The ability to actively change the location of sensors can be used to mitigate some of the traditional problems associated with static sensor networks. On the other hand, sensor mobility brings its own challenges. These include challenges associated with in-network aggregation of sensor data, routing, and activity monitoring of responders. Moreover, all different mobility patterns (e.g., sink mobility, sensor mobility) have their special properties, so that each mobile device class needs its own approach. In this article, we present a platform which benefits from both static and mobile sensors and addresses these challenges. The system integrates WSNs, UAVs, and actuators into a disaster response setting, and provides facilities for event detection, autonomous network repair by UAVs, and quick response by integrated operational forces.
机译:无线传感器网络有望彻底改变任务关键数据的捕获,处理和通信,以使用第一批作战部队。它们的低成本,低功耗和体积小巧的特性使其可以将其嵌入重症监护区的环境监控标签,急救人员统一的装备以及与无人飞行器相连的数据收集器水槽。主动更改传感器位置的功能可用于缓解与静态传感器网络相关的一些传统问题。另一方面,传感器移动性带来了自己的挑战。这些挑战包括与传感器数据的网络内聚合,路由以及响应者的活动监视相关的挑战。此外,所有不同的移动性模式(例如,宿移动性,传感器移动性)具有其特殊的属性,因此每个移动设备类别都需要其自己的方法。在本文中,我们介绍了一个既可从静态传感器也可从移动传感器中受益的平台,并可以应对这些挑战。该系统将WSN,UAV和执行器集成到灾难响应设置中,并提供事件检测,UAV自主网络修复以及集成作战部队快速响应的功能。

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