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Node Scheduling Strategies for Achieving Full-View Area Coverage in Camera Sensor Networks

机译:在摄像机传感器网络中实现全视图区域覆盖的节点调度策略

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摘要

Unlike conventional scalar sensors, camera sensors at different positions can capture a variety of views of an object. Based on this intrinsic property, a novel model called full-view coverage was proposed. We study the problem that how to select the minimum number of sensors to guarantee the full-view coverage for the given region of interest (ROI). To tackle this issue, we derive the constraint condition of the sensor positions for full-view neighborhood coverage with the minimum number of nodes around the point. Next, we prove that the full-view area coverage can be approximately guaranteed, as long as the regular hexagons decided by the virtual grid are seamlessly stitched. Then we present two solutions for camera sensor networks in two different deployment strategies. By computing the theoretically optimal length of the virtual grids, we put forward the deployment pattern algorithm (DPA) in the deterministic implementation. To reduce the redundancy in random deployment, we come up with a local neighboring-optimal selection algorithm (LNSA) for achieving the full-view coverage. Finally, extensive simulation results show the feasibility of our proposed solutions.
机译:与传统的标量传感器不同,位于不同位置的摄像机传感器可以捕获对象的各种视图。基于这种内在属性,提出了一种称为全视角覆盖的新型模型。我们研究了如何选择最少数量的传感器以保证给定关注区域(ROI)的全视图覆盖范围的问题。为了解决此问题,我们导出了具有全点邻域覆盖的传感器位置的约束条件,并且该点周围的节点数量最少。接下来,我们证明,只要无缝拼接由虚拟网格确定的规则六边形,就可以大致保证全视图区域的覆盖范围。然后,我们以两种不同的部署策略为相机传感器网络提供了两种解决方案。通过计算虚拟网格的理论最佳长度,我们在确定性实现中提出了部署模式算法(DPA)。为了减少随机部署中的冗余,我们提出了一种局部邻域最优选择算法(LNSA)以实现全视图覆盖。最后,大量的仿真结果表明了我们提出的解决方案的可行性。

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