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Emergency data gathering with buffer constraint in actuator-based wireless sensor networks

机译:基于执行器的无线传感器网络中具有缓冲区约束的紧急数据收集

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Employing the mobility of actuators to achieve data collection is a challenging problem in the actuator-based wireless sensor networks (AWSNs). The related actuator is usually required to collect the whole information within time delays. However, in practice not all the information need to be collected immediately except the emergencies. In this paper, a mobile emergency data gathering algorithm is proposed on a basis of an improved dynamic shortest path tree. In this algorithm, the dynamic shortest tree is constructed firstly. Subsequently, polling points are chosen to gather data acquired by the sensor network nodes in related sub-regions when considering the transmission hops. Finally, the buffer constraints and emergencies are both taken as key parameters to select a subset of polling points as anchor points for the actuator. The optimal path for the actuator is achieved to minimize energy consumption considering the communication radius. Simulation results demonstrate that this algorithm can promptly response to emergent events and reduce the packet loss with the extended lifetime of network.
机译:在基于执行器的无线传感器网络(AWSN)中,利用执行器的移动性来实现数据收集是一个具有挑战性的问题。通常需要相关的执行器在时间延迟内收集全部信息。但是,实际上,除紧急情况外,并非所有信息都需要立即收集。在改进的动态最短路径树的基础上,提出了一种移动应急数据采集算法。该算法首先构造动态最短树。随后,在考虑传输跃点时,选择轮询点以收集由传感器网络节点在相关子区域中获取的数据。最后,缓冲区约束和紧急情况均作为关键参数来选择轮询点的子集作为执行器的锚点。考虑到通信半径,实现了用于执行器的最佳路径,以最大程度地降低能耗。仿真结果表明,该算法能够及时响应突发事件,并随着网络寿命的延长而降低丢包率。

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