Dynamic Task Scheduling for Energy Harvesting Nodes in Wireless Sensor Networks

Akifumi Maeda, S. Kasahara, Yutaka Takahashi
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引用次数: 2

Abstract

The energy harvesting wireless sensor networks are explored in order to enable environmental monitoring without maintenance for a long term. In this paper, we propose a task scheduling algorithm which performs fair and periodic data collection from all energy harvesting sensor nodes. The goal of the proposed algorithm is to collect data effectively in the situation where the prediction accuracy of recharging profiles is low. In the proposed algorithm, tasks of sensing, reception and transmission for a sensor node are prioritized and scheduled according to the amount of harvested energy of the node. We evaluate the proposed algorithm by computer simulation. As for performance measures, we consider the average number of packets sent to the sink node per cycle for a node, the fairness index in terms of the node position. and the average transmission delay. Numerical examples show that the proposed algorithm increases the average number of packets sent to the sink node while it never degrades fairness index and the average transmission delay as compared with a conventional scheme especially when the amount of harvested energy is large.
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无线传感器网络能量收集节点的动态任务调度
为了实现长期无维护的环境监测,探索了能量采集无线传感器网络。在本文中,我们提出了一种任务调度算法,以公平和周期性地从所有能量收集传感器节点收集数据。该算法的目标是在充电曲线预测精度较低的情况下有效地收集数据。在该算法中,传感器节点的感知、接收和传输任务根据节点的能量收获量进行优先级排序和调度。我们通过计算机仿真对所提出的算法进行了评估。至于性能指标,我们考虑每个节点每个周期发送到汇聚节点的数据包的平均数量,即节点位置的公平性指数。和平均传输延迟。数值算例表明,与传统算法相比,该算法在提高发送到汇聚节点的平均数据包数的同时,不会降低公平性指数和平均传输延迟,特别是在能量收集量较大的情况下。
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