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Path Optimization of Mobile Sink Node in Wireless Sensor Network Water Monitoring System

机译:无线传感器网络水监测系统移动宿节点的路径优化

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In the water area monitoring of the traditional wireless sensor networks (WSNs), the monitoring data are mostly transmitted to the base station through multihop. However, there are many problems in multihop transmission in traditional wireless sensor networks, such as energy hole, uneven energy consumption, unreliable data transmission, and so on. Based on the high maneuverability of unmanned aerial vehicles (UAVs), a mobile data collection scheme is proposed, which uses UAV as a mobile sink node in WSN water monitoring and transmits data wirelessly to collect monitoring node data efficiently and flexibly. In order to further reduce the energy consumption of UAV, the terminal nodes are grouped according to the dynamic clustering algorithm and the nodes with high residual energy in the cluster are selected as cluster head nodes. Then, according to the characteristics of sensor nodes with a certain range of wireless signal coverage, the angular bisection method is introduced on the basis of the traditional ant colony algorithm to plan the path of UAV, which further shortens the length of the mobile path. Finally, the effectiveness and correctness of the method are proved by simulation and experimental tests.
机译:在传统无线传感器网络(WSNS)的水域监测中,监控数据主要通过多跳将基站传输到基站。然而,传统无线传感器网络中的多跳传输中存在许多问题,例如能量孔,不均匀的能量消耗,不可靠的数据传输等。基于无人驾驶飞行器(无人机)的高机动性,提出了一种移动数据收集方案,其使用UAV作为WSN水监测中的移动宿节点,并无线地传输数据以有效地和灵活地收集监控节点数据。为了进一步降低UAV的能量消耗,终端节点根据动态聚类算法分组,并且选择集群中具有高剩余能量的节点作为集群头节点。然后,根据具有一定范围的无线信号覆盖范围的传感器节点的特性,基于传统的蚁群算法来规划UAV的路径来引入角直角方法,这进一步缩短了移动路径的长度。最后,通过模拟和实验测试证明了该方法的有效性和正确性。

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