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Efficient Node and Sensed Module Management for Multisensory Wireless Sensor Networks

机译:多传感器无线传感器网络的高效节点和感测模块管理

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摘要

In target tracking wireless sensor networks, choosing a part of sensor nodes to execute tracking tasks and letting the other nodes sleep to save energy are efficient node management strategies. However, at present more and more sensor nodes carry many different types of sensed modules, and the existing researches on node selection are mainly focused on sensor nodes with a single sensed module. Few works involved the management and selection of the sensed modules for sensor nodes which have several multi-mode sensed modules. This work proposes an efficient node and sensed module management strategy, called ENSMM, for multisensory WSNs (wireless sensor networks). ENSMM considers not only node selection, but also the selection of the sensed modules for each node, and then the power management of sensor nodes is performed according to the selection results. Moreover, a joint weighted information utility measurement is proposed to estimate the information utility of the multiple sensed modules in the different nodes. Through extensive and realistic experiments, the results show that, ENSMM outperforms the state-of-the-art approaches by decreasing the energy consumption and prolonging the network lifetime. Meanwhile, it reduces the computational complexity with guaranteeing the tracking accuracy.
机译:在目标跟踪无线传感器网络中,选择一部分传感器节点执行跟踪任务,让其他节点休眠以节省能源是有效的节点管理策略。然而,目前越来越多的传感器节点承载着多种不同类型的感测模块,而现有的节点选择研究主要集中在具有单个感测模块的传感器节点上。很少有工作涉及传感器节点的感测模块的管理和选择,传感器节点具有多个多模式感测模块。这项工作为多传感器WSN(无线传感器网络)提出了一种有效的节点和感知模块管理策略,称为ENSMM。 ENSMM不仅考虑节点选择,还考虑每个节点的感测模块的选择,然后根据选择结果执行传感器节点的电源管理。此外,提出了一种联合加权信息效用度量,以估计不同节点中多个感测模块的信息效用。通过广泛而现实的实验,结果表明,ENSMM通过降低能耗和延长网络寿命而优于最新技术。同时,在保证跟踪精度的同时,降低了计算复杂度。

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