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Mobile Traversal Schemes based on Triangulation Coverage

机译:基于三角覆盖的移动遍历方案

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In harsh outdoor terrains like disaster areas and urban toxic regions, optimal placements of static sensor nodes might not be possible, leading to possible incomplete coverage of the region. In such situations, mobile sensor nodes (MSNs) might be a better option and a significantly fewer number of nodes are required than their static counterparts. A triangulation-based coverage where, groups of three MSNs position themselves to form equilateral triangles, has several applications in localization, 3D imaging and coordinated search operation. In this paper, we present several mobile traversal algorithms (MTA) based on triangulation coverage that employs N ≥ 3 MSNs such that, up to N - 3 node failures can be tolerated. MTA achieves three objectives: (a) as N increases, the total time to cover the field decreases in the absence of a failure; (b) each MSN travels a minimum distance; (c) upon a failure, the remaining MSNs efficiently complete the coverage of the field. The bounds on the total traveling distance and time are derived and the tightness of the bounds are proven through simulations. Furthermore, we also derive the bounds on the distance traveled by an MSN to complete the coverage process. The bounds on the individual traveling distances are useful in minimizing and bounding the energy consumption of the MSNs.
机译:在灾难地区和城市有毒区域等恶劣的户外地形中,静态传感器节点的最佳放置可能无法实现,从而导致该区域的覆盖范围可能不完整。在这种情况下,移动传感器节点(MSN)可能是一个更好的选择,与静态节点相比,所需的节点数量要少得多。由三个MSN组成的组将自己定位为形成等边三角形的基于三角剖分的覆盖率在定位,3D成像和协调搜索操作中具有多种应用。在本文中,我们介绍了几种基于三角覆盖的移动遍历算法(MTA),该算法采用N≥3个MSN,因此最多可以容忍N-3个节点故障。 MTA实现了三个目标:(a)随着N的增加,在没有故障的情况下,覆盖该领域的总时间减少了; (b)每个MSN行驶最小距离; (c)发生故障时,其余的MSN可以有效地完成该字段的覆盖范围。得出了总行驶距离和时间的界限,并通过仿真证明了界限的紧密性。此外,我们还导出了MSN完成覆盖过程所经过的距离的范围。各个行驶距离的边界可用于最小化和限制MSN的能耗。

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