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首页> 外文期刊>International Journal of Sensor Networks >Spiderweb strategy: application for area coverage with mobile sensor nodes in 3D wireless sensor network
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Spiderweb strategy: application for area coverage with mobile sensor nodes in 3D wireless sensor network

机译:SpiderWeb策略:在3D无线传感器网络中使用移动传感器节点的区域覆盖应用

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摘要

The problem of area coverage in 3D wireless sensor networks (WSNs) is a NP-Hard problem. The approaches used to optimise this problem are not effective due to the difficulty of ensuring 3D connectivity, communication, and monitoring. The fundamental issue of all these constraints is the difficulty of deploying the sensor nodes with fair densities on the 3D areas, in order to guarantee the connectivity and the coverage over all the network. In this paper, we will mimic the spider techniques to texture their web to the movements of their enemies, and to hunt their prey, to ensure the 3D coverage inside WSNs. Indeed, spider web are made to catch insects and they have remarkable strength and resilience. The mobility of the sensor nodes, according to Archimedes' spiral function, facilitates the proper node positioning. Positioning the mobile sensor nodes by miming a spider canvas in 3D ensures the equitable distribution of nodes in the area of interest (AoI). Moreover, the ability to vary communication and surveillance radii ensures the connectivity and the entire coverage. We have made some simulations to assess performance of our algorithms. Our simulation shows that the spider canvas strategy outperforms the area coverage in 3D scheme in both effectiveness and efficiency.
机译:3D无线传感器网络(WSNS)中面积覆盖问题是NP难题。由于确保3D连接,通信和监控的难度,用于优化此问题的方法无效。所有这些约束的基本问题是难以在3D区域上用公平密度部署传感器节点,以保证所有网络的连接和覆盖范围。在本文中,我们将模仿蜘蛛技术来纹理他们的网站,以捕捉他们的敌人,并捕猎他们的猎物,以确保WSN内的3D覆盖范围。实际上,蜘蛛网被捕捉昆虫,它们具有显着的力量和弹性。根据Archimedes的螺旋功能的传感器节点的移动性有助于适当的节点定位。通过Miming在3D中Miming蜘蛛帆布来定位移动传感器节点可确保感兴趣区域(AOI)中的节点的公平分布。此外,改变通信和监视半径的能力确保了连接和整个覆盖范围。我们已经模拟了评估我们算法的性能。我们的仿真表明,蜘蛛帆布策略在有效性和效率方面优于3D方案中的面积覆盖率。

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