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Reliable virtual sensing for wireless sensor networks

机译:无线传感器网络的可靠虚拟传感

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摘要

Several “energy-hungry” sensors such as gas detectors, radar, and cameras have excessive energy dissipation. Virtual sensing is a technique which “breaks the downward spiral” between energy expenditure and events-miss probabilities. The idea is to deactivate main sensors and utilize a set of energy-friendly HW & SW components instead. However, reliability of such systems composed of virtual and real sensors should be as high as possible. In this article, a novel approach is proposed to improve the virtual sensing reliability. An ontology on sensor-environment relationships is utilized to automatically generate rules before deployment to switch between real and virtual sensors. We illustrate the general approach by a case study: we show how reliable virtual sensing reduces the energy consumption and event-miss probabilities of object tracking applications. Seismic sensors and a dynamic time-warping algorithm shape the virtual object tracking sensor. We validate the precision of such virtual sensors over several experiments. A series of experiments with a network of TelosB sensor nodes show that virtual sensors have much less energy consumption than a Doppler μ-radar (main) sensor. Finally, we evaluate event-miss probabilities and lifetime extension by using the WSNet simulator.
机译:诸如气体探测器,雷达和摄像机之类的一些“耗能”传感器具有过多的能量耗散。虚拟感测是一种“打破能量消耗和事件遗漏概率之间的螺旋式下降”的技术。这个想法是停用主要传感器,而是使用一组节能的硬件和软件组件。但是,由虚拟传感器和真实传感器组成的此类系统的可靠性应尽可能高。在本文中,提出了一种新颖的方法来提高虚拟感测的可靠性。传感器与环境之间的关系的本体用于在部署之前自动生成规则,以在真实传感器和虚拟传感器之间进行切换。我们通过一个案例研究来说明通用方法:我们展示了可靠的虚拟感测如何减少对象跟踪应用程序的能耗和事件丢失的可能性。地震传感器和动态时间扭曲算法可塑造虚拟对象跟踪传感器。我们通过几次实验验证了这种虚拟传感器的精度。使用TelosB传感器节点网络进行的一系列实验表明,虚拟传感器比多普勒μ雷达(主)传感器具有更低的能耗。最后,我们使用WSNet模拟器评估事件丢失的可能性和生存期的延长。

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