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The Mobile Sensor Nodes Scheduling Algorithm Based on Grid Competition in UWSNs

机译:UWSN中基于网格竞争的移动传感器节点调度算法

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The deployment of sensors in Underwater Wireless Sensor Networks (UWSNs) is a fundamental issue in underwater wireless communications. Aiming at the problem of sensor nodes failure caused by the collection of information and too much data transformation in the deployment of sensor of UWSNs, the mobile sensor nodes scheduling algorithm based on grids competition in UWSNs is proposed. Firstly, a hexagonal grid partition model is designed to reduce the communication energy consumption combined with existing of grid computing. On the basis of the model, the energy consumption analysis and mathematical model of sensor node scheduling are given. Further, a length-search message exchange mechanism involved in the model is developed. Hence the scheduling plan among the grids can be computed therefore, the whole algorithm is proposed. Finally, simulation experiments illustrate the rationality and effectiveness of the proposed algorithm. The simulation results show that the proposed algorithm can significantly reduce the communication energy consumption and mobile consumption of sensor nodes. In a conclusion, the energy balance among sensor nodes can be guaranteed, and the network lifetime can be extended somewhat.
机译:水下无线传感器网络(UWSN)中传感器的部署是水下无线通信中的一个基本问题。针对UWSNs传感器部署中信息收集和数据转换过多导致的传感器节点故障问题,提出了基于网格竞争的UWSNs移动传感器节点调度算法。首先,结合现有的网格计算技术,设计了六角形网格划分模型,以降低通信能耗。在此模型的基础上,给出了传感器节点调度的能耗分析和数学模型。此外,开发了模型中涉及的长度搜索消息交换机制。因此,可以计算网格之间的调度计划,从而提出了整个算法。最后,仿真实验说明了该算法的合理性和有效性。仿真结果表明,该算法可以显着降低传感器节点的通信能耗和移动能耗。总之,可以保证传感器节点之间的能量平衡,并且可以延长网络寿命。

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