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Weighted Rendezvous Planning on Q-Learning Based Adaptive Zone Partition with PSO Based Optimal Path Selection

机译:基于PSO的最优路径选择对Q学基于自适应区分区的加权约合规划

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摘要

Nowadays, wireless sensor network (WSN) has emerged as the most developed research area. Different research have been demonstrated for reducing the sensor nodes' energy consumption with mobile sink in WSN. But, such approaches were dependent on the path selected by the mobile sink since all sensed data should be gathered within the given time constraint. Therefore, in this article, the issue of an optimal path selection is solved when multiple mobile sinks are considered in WSN. In the initial stage, Q-learning based Adaptive Zone Partition method is applied to split the network into smaller zones. In each zone, the location and residual energy of nodes are transmitted to the mobile sinks through Mobile Anchor. Moreover, Weighted Rendezvous Planning is proposed to assign a weight to every node according to its hop distance. The collected data packets are transmitted to the mobile sink node within the given delay bound by means of a designated set of rendezvous points (RP). Then, an optimal path from RP to mobile sink is selected utilizing the particle swarm optimization algorithm which is applied during routing process. Experimental results demonstrated the effectiveness of the proposed approach where the network lifetime is increased by the reduction of energy consumption in multihop transmission.
机译:如今,无线传感器网络(WSN)已成为最开发的研究区。已经证明了在WSN中将传感器节点的能量消耗降低了不同的研究。但是,这种方法依赖于移动接收器选择的路径,因为应该在给定的时间约束内收集所有感测的数据。因此,在本文中,当在WSN中考虑多个移动接收器时,解决了最佳路径选择的问题。在初始阶段,应用基于Q学习的自适应区域分区方法以将网络拆分为较小的区域。在每个区域中,节点的位置和剩余能量通过移动锚传输到移动接收器。此外,建议根据其跳距为每个节点分配权重的Rendezvous规划。通过指定的Rendezvous点(RP),收集的数据分组被发送到给定的延迟内的移动宿节点。然后,利用在路由过程期间应用的粒子群优化算法选择来自RP到移动接收器的最佳路径。实验结果证明了所提出的方法的有效性,其中通过多跳变速器的能耗降低了网络寿命的增加。

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