A lazy DVS approach for dynamic real time system

S. Agrawal
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Abstract

This paperpresents a LazyDVS scheduling algorithm that offers higher acceptance ratio (number of tasks able to meet their deadline is to number of tasks appearing) with equivalent orlesser energy consumption for battery powered dynamic real time system. It is modeled for aperiodic workload by utilizing the concept of late start and dynamic voltage scaling. In this paper, with a motivational example we show that existing approaches have poor energy and aperiodic workload management, thus, are not suitable for scheduling aperiodic workload on limited source of energy. Based on this motivation we propose a Lazy DVS scheduling algorithm that tradeoffs between timing constraint and the available energy to provide better acceptance ratio with lower energy. The extensive examples and simulation results illustrate that our approach can effectively improve the acceptance ratio while consuming lower energy.
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动态实时系统的延迟DVS方法
本文提出了一种LazyDVS调度算法,该算法在电池供电的动态实时系统中提供了更高的接受比(能够完成任务的任务数与出现的任务数之比),且能耗相当或更低。利用延迟启动和动态电压缩放的概念,对非周期工作负载进行了建模。在本文中,我们通过一个激励的例子证明了现有的方法具有较差的能量和非周期性工作负载管理,因此,不适合在有限的能量来源下调度非周期性工作负载。基于这一动机,我们提出了一种延迟分布式交换机调度算法,该算法在时间约束和可用能量之间进行权衡,以更低的能量提供更好的接受率。大量的实例和仿真结果表明,该方法可以有效地提高接收比,同时降低能耗。
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