An optimal energy aware aperiodic task server for autonomous IoT sensors

Rola El Osta, M. Chetto, Hussein El Ghor
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Abstract

A real-time applicative software consists of both aperiodic and periodic tasks. The periodic tasks have regular arrival times and strict deadlines. The aperiodic tasks have irregular arrival times and no deadline. The objective of an optimal aperiodic task server is to guarantee minimal response times for the aperiodic tasks and no violation of hard deadlines for periodic tasks. We consider a real-time energy harvesting system composed of energy harvester, energy storage unit, uniprocessing unit and the real-time tasks. We introduce a novel periodic task scheduler, namely SSP which is an extension of the slack stealing server so as to cope with fluctuations in energy availability. Experimental results show that the proposed algorithm achieves better performance in terms of aperiodic responsiveness. Simulations have been conducted for various settings of workloads and harvested energy profiles.
自主物联网传感器的最佳能量感知非周期任务服务器
实时应用软件由非周期任务和周期任务组成。周期性任务有固定的到达时间和严格的截止日期。非周期任务的到达时间不固定,没有截止日期。最优非周期任务服务器的目标是保证非周期任务的响应时间最短,并且不违反周期任务的硬截止日期。考虑了一种由能量采集器、能量存储单元、单处理单元和实时任务组成的实时能量收集系统。为了应对能源可用性的波动,我们引入了一种新的周期性任务调度程序,即SSP,它是对slack窃取服务器的扩展。实验结果表明,该算法在非周期响应性方面具有较好的性能。对各种工作负载设置和收集的能量分布进行了模拟。
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