Multiversion scheduling in rechargeable energy-aware real-time systems

C. Rusu, R. Melhem, D. Mossé
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引用次数: 74

Abstract

In the context of battery-powered real-time systems three constraints need to be addressed: energy; deadlines; and task rewards. Many future real-time systems will count on different software versions, each with different rewards, time and energy requirements, to achieve a variety of QoS-aware tradeoffs. We propose a solution that allows the device to run the most valuable task versions while still meeting all deadlines and without depleting the energy. Assuming that the battery is rechargeable, we also propose: (a) a static solution that maximizes the system value assuming a worst-case scenario (i.e., worst-case task execution times); and (b) a dynamic scheme that takes advantage of the extra energy in the system when worst-case scenarios do not happen. Three dynamic policies are shown to make better use of the recharging energy while improving the system value.
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可充电能量感知实时系统中的多版本调度
在电池供电的实时系统中,需要解决三个制约因素:能量;最后期限;还有任务奖励。许多未来的实时系统将依赖于不同的软件版本,每个版本都有不同的奖励、时间和能量需求,以实现各种qos感知权衡。我们提出了一个解决方案,允许设备运行最有价值的任务版本,同时仍然满足所有截止日期,而不会耗尽能量。假设电池是可充电的,我们还提出:(a)假设最坏情况(即最坏任务执行时间),使系统价值最大化的静态解决方案;(b)在不发生最坏情况时,利用系统中额外能量的动态方案。提出了三种动态策略,可以在提高系统价值的同时更好地利用充电能量。
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A synthetic utilization bound for aperiodic tasks with resource requirements Scheduling techniques for reducing leakage power in hard real-time systems Synthesis of safe, QoS extendible, application specific schedulers for heterogeneous real-time systems Scheduling of early quantum tasks Multiversion scheduling in rechargeable energy-aware real-time systems
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