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Redundancy and Criticality based Scheduling in Wireless Video Sensor Networks for Monitoring Critical Areas

机译:用于监视关键区域的无线视频传感器网络中基于冗余和关键度的调度

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Applications for monitoring critical areas, based on Wireless Video Sensor Networks (WVSN), require simultaneously good level of coverage of the entire region of deployment, high frame capture speed and low power consumption in order to increase network lifetime. The question is how to find a tradeoff between these requirements. In this paper, we first propose two new approaches based on the cover set concept to help a node to find its redundancy level which is defined by the cardinality of its cover set. Then, thanks to a model based on behavior functions modeled by quadratic Bezier curves, we link the frame capture speed of video node to its redundancy level and to its criticality which is assigned to a node according to its position in the network. Border node has high criticality while interior one has low criticality. To identify boundary nodes, we propose an algorithm based on Greedy Perimeter Stateless Routing protocol (GPSR). Then, we propose an algorithm to schedule the activity of sensor nodes according to the redundancy level and criticality of each node. Finally, we introduce a new concept called backward border surveillance based on the cover set approach. Simulation results are presented to show performances of the two proposed approaches in terms of percentage of coverage, number of nodes with cover set, size of this latter, the impact of our scheduling algorithm on network lifetime and the incidence of backward border surveillance concept on quality of surveillance.
机译:基于无线视频传感器网络(WVSN)的用于监视关键区域的应用程序需要同时对整个部署区域具有良好的覆盖范围,较高的帧捕获速度和较低的功耗,以延长网络寿命。问题是如何在这些需求之间找到平衡点。在本文中,我们首先提出两种基于覆盖集概念的新方法,以帮助节点找到由其覆盖集的基数定义的冗余级别。然后,借助基于行为的函数的模型,该行为函数由二次Bezier曲线建模,我们将视频节点的帧捕获速度与其冗余级别和根据节点在网络中的位置分配给节点的关键程度相联系。边界节点的临界度很高,而内部节点的临界度很低。为了识别边界节点,我们提出了一种基于贪婪边界无状态路由协议(GPSR)的算法。然后,我们提出了一种算法,可以根据每个节点的冗余级别和关键程度来调度传感器节点的活动。最后,我们基于封面集方法引入了一个称为后向边界监视的新概念。仿真结果表明,这两种方法在覆盖百分比,具有覆盖集的节点数,后者的大小,我们的调度算法对网络生存期的影响以及后向边界监视概念对质量的影响方面均具有良好的性能。监视。

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