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A Comparative Study of System-Level Energy Management Methods for Fault-Tolerant Hard Real-Time Systems

机译:容错硬实时系统的系统级能量管理方法的比较研究

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Low energy consumption and fault tolerance are often key objectives in the design of real-time embedded systems. However, these objectives are at odds, and there is a trade-off between them. Real-time systems usually use system level energy reduction methods, i.e., dynamic voltage scaling (DVS) and dynamic power management (DPM). Also hard real-time systems often use replication to achieve fault tolerance. In this paper, we investigate the impact of system level energy reduction methods on both the reliability and energy consumption of hard real-time systems which use replication for fault tolerance. In this analysis, we have considered four various existing energy management methods: 1) Classic DPM, 2) Classic DVS, 3) Postponement method: a variation of DPM which is only applicable to replicated systems, and 4) Hybrid method: a combination of Postponement and DVS. Based on the comparative study, we have provided guidelines so that a designer can decide which energy management method is more suitable for a given application. For example, we have shown that when reliability is the main concern, the postponement method is the most preferable. However, when the energy consumption is the primary concern, the hybrid method may be more appropriate.
机译:低能耗和容错能力通常是实时嵌入式系统设计的主要目标。但是,这些目标是矛盾的,它们之间需要权衡。实时系统通常使用系统级节能方法,即动态电压缩放(DVS)和动态电源管理(DPM)。硬实时系统也经常使用复制来实现容错。在本文中,我们研究了系统级节能方法对使用复制来实现容错的硬实时系统的可靠性和能耗的影响。在此分析中,我们考虑了四种现有的能源管理方法:1)经典DPM,2)经典DVS,3)推迟方法:DPM的一种变体,仅适用于复制系统,以及4)混合方法:推迟和DVS。在比较研究的基础上,我们提供了指导原则,以便设计人员可以决定哪种能量管理方法更适合给定的应用。例如,我们已经表明,当可靠性成为主要考虑因素时,最优选延迟方法。但是,当能源消耗是主要问题时,混合方法可能更合适。

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