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A Predictive Duty Cycle Adaptation Framework Using Augmented Sensing for Wireless Camera Networks

机译:无线摄像头网络使用增强感应的预测占空比适应框架

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Energy efficiency dominates practically every aspect of the design of a wireless sensor network and duty cycling is an important tool for achieving high energy efficiencies. Duty cycling for wireless camera networks meant for tracking objects is made complex by the nodes having to anticipate the arrival of the objects in their field-of-view. The consequences of an object arriving in the view-region of a camera when it is sleeping need no elaboration. Our work presents a predictive framework to provide nodes with an ability to anticipate the arrival of objects in the field-of-view of their cameras. Our predictive framework differs from others in that the nodes whose duty cycles are increased are at least one step removed from the immediate neighborhood of the nodes where the objects are currently visible. By eliminating the need for the currently busiest nodes to also be in charge of informing their nonbusy immediate neighbors to get ready for object arrival, we end up with a more robust strategy for updating the duty cycle at the nodes where the objects are highly likely to appear soon. The proposed scheme works by using an existing MAC header bit that is already in the 802.15.4 protocol and, in that sense our anticipatory approach for notifying the nodes about the current state of the object location entails no additional expenditure of energy. Our contribution includes evaluations based on large-scale simulations as well as real experiments with an Imote2-based wireless camera network.
机译:能源效率实际上主导着无线传感器网络设计的各个方面,而占空比是实现高能源效率的重要工具。节点必须预见对象在其视场中的到达,使得用于跟踪对象的无线摄像机网络的占空比变得复杂。无需详细说明物体在睡眠时到达照相机视域的后果。我们的工作提出了一个预测框架,为节点提供了在其摄像机视场中预测对象到达的能力。我们的预测框架与其他框架的不同之处在于,占空比增加的节点至少要从当前对象可见的节点的邻近区域中移出一步。通过消除当前最繁忙的节点还负责通知其不繁忙的直接邻居为对象到达做好准备的需求,我们最终获得了一种更强大的策略,可更新对象极有可能发生节点的占空比即将出现。所提出的方案通过使用已经在802.15.4协议中的现有MAC报头位来工作,在这种意义上,我们用于通知节点有关对象位置的当前状态的预期方法不需要额外的能量消耗。我们的贡献包括基于大规模仿真的评估以及基于Imote2的无线摄像头网络的真实实验。

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