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Optimal Energy Consumption Tasks Scheduling Strategy for Multi-Radio WSNs

机译:多无线电无线传感器网络的最佳能耗任务调度策略

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摘要

Multi-radio technology is regarded as a promising way to improve the performance of Wireless Sensor Networks (WSNs) and has attracted much attention of researchers. It is very important to reduce energy consumption and to prolong the lifetime of Multi-Radio WSNs (MR-WSNs), since the node is generally battery-operated in MR-WSN environments. In this paper, two typical types of energy consumption process, the transmitting energy consumption and idle listening energy consumption, are analyzed firstly. Based on the above analysis, the energy consumption model of multi-radio nodes is built, and then it is considered as the optimization objective for the minimization energy consumption of multi-radio nodes. Furthermore, the heuristic optimal energy consumption task scheduling strategy based on the Particle Swarm Optimization (PSO) algorithm is proposed, and then the detailed steps of the proposed strategy are presented. Finally, the effectiveness and performance of the proposed strategy are evaluated through practical experiments and simulations. Evaluation results show that the proposed strategy outperforms some other algorithms, in terms of energy consumption, network lifetime, and tasks extensibility.
机译:多无线电技术被认为是改善无线传感器网络(WSN)性能的一种有前途的方法,并引起了研究人员的广泛关注。减少能耗并延长多无线电WSN(MR-WSN)的寿命非常重要,因为该节点通常在MR-WSN环境中由电池供电。本文首先分析了两种典型的能耗过程,即传输能耗和空闲监听能耗。在以上分析的基础上,建立了多无线节点的能耗模型,并将其作为最小化多无线节点能耗的优化目标。提出了一种基于粒子群算法的启发式最优能耗任务调度策略,并给出了该策略的具体步骤。最后,通过实际实验和仿真评估了所提出策略的有效性和性能。评估结果表明,该策略在能耗,网络寿命和任务可扩展性方面优于其他算法。

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