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Energy-Efficient Scheduling for Hybrid Tasks in Control Devices for the Internet of Things

机译:物联网控制设备中混合任务的节能调度

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摘要

In control devices for the Internet of Things (IoT), energy is one of the critical restriction factors. Dynamic voltage scaling (DVS) has been proved to be an effective method for reducing the energy consumption of processors. This paper proposes an energy-efficient scheduling algorithm for IoT control devices with hard real-time control tasks (HRCTs) and soft real-time tasks (SRTs). The main contribution of this paper includes two parts. First, it builds the Hybrid tasks with multi-subtasks of different function Weight (HoW) task model for IoT control devices. HoW describes the structure of HRCTs and SRTs, and their properties, e.g., deadlines, execution time, preemption properties, and energy-saving goals, etc. Second, it presents the Hybrid Tasks' Dynamic Voltage Scaling (HTDVS) algorithm. HTDVS first sets the slowdown factors of subtasks while meeting the different real-time requirements of HRCTs and SRTs, and then dynamically reclaims, reserves, and reuses the slack time of the subtasks to meet their ideal energy-saving goals. Experimental results show HTDVS can reduce energy consumption about 10%–80% while meeting the real-time requirements of HRCTs, HRCTs help to reduce the deadline miss ratio (DMR) of systems, and HTDVS has comparable performance with the greedy algorithm and is more favorable to keep the subtasks' ideal speeds.
机译:在物联网(IoT)的控制设备中,能源是关键的限制因素之一。动态电压缩放(DVS)已被证明是减少处理器能耗的有效方法。本文针对具有硬实时控制任务(HRCT)和软实时任务(SRT)的IoT控制设备提出了一种节能调度算法。本文的主要贡献包括两个部分。首先,它为物联网控制设备构建具有不同功能权重(HoW)任务模型的多个子任务的混合任务。 HOW描述了HRCT和SRT的结构及其属性,例如截止日期,执行时间,抢占属性和节能目标等。其次,提出了混合任务的动态电压缩放(HTDVS)算法。 HTDVS首先设置子任务的减速因子,同时满足HRCT和SRT的不同实时要求,然后动态回收,保留和重用子任务的空闲时间,以实现其理想的节能目标。实验结果表明,HTDVS可以在满足HRCT实时性要求的同时降低能耗约10%–80%,HRCT有助于降低系统的最后期限未命中率(DMR),HTDVS具有与贪婪算法相当的性能,并且性能更佳。有利于保持子任务的理想速度。

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