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On the Scheduling of Energy-Aware Fault-Tolerant Mixed-Criticality Multicore Systems with Service Guarantee Exploration

机译:关于服务保证探索的能量感知容错混合 - 临界多核系统的调度

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Advancement of Cyber-Physical Systems has attracted attention to Mixed-Criticality Systems (MCSs), both in research and in industrial designs. As multicore platforms are becoming the dominant trend in MCSs, joint energy and reliability management is a crucial issue. In addition, providing guaranteed service level for low-criticality tasks in critical mode is of great importance. To address these problems, we propose "LETR-MC"scheme that simultaneously supports certification, energy management, fault-tolerance, and guaranteed service level in mixed-criticality multicore systems. In this paper, we exploit task-replication to not only satisfy reliability requirements, but also to improve the QoS of low-criticality tasks in overrun situation. Our proposed LETR-MC scheme determines the number of replicas, and reduces the execution time overlap between the primary tasks and replicas. Moreover, instead of ignoring low-criticality tasks or selectively executing them without any guaranteed service level in overrun mode, it mathematically explores the minimum achievable service guarantee for each low-criticality task in different execution modes, i. e., normal, fault-occurrence, overrun and critical operation modes. We develop novel unified demand bound functions (DBF), along with a DVFS method based on the proposed DBF analysis. Our experimental results show that LETR-MC provides up to 59 percent (24 percent on average) energy saving, and significantly improves the service levels of low-criticality tasks compared to the state-of-the-art schemes.
机译:网络 - 物理系统的进步引起了研究和工业设计中的混合关键性系统(MCS)。随着多核平台正在成为MCSS的主导趋势,关节能源和可靠性管理是一个至关重要的问题。此外,为关键模式下的低关键性任务提供有保证的服务水平非常重要。为解决这些问题,我们提出了“Letr-MC”方案,同时支持混合关键性多核系统中的认证,能源管理,容错和保证服务级别。在本文中,我们不仅可以满足可靠性要求来利用任务复制,而且还可以提高超级情况下的低关键项任务的QoS。我们建议的Letr-MC方案确定副本的数量,并减少主任务和副本之间的执行时间重叠。此外,不是忽略低关键性任务或选择性地执行它们,而无需在超级模式下没有任何保证的服务级别,而是数学上探讨了不同执行模式中的每个低关键性任务的最小可实现的服务保证。 e,正常,断层发生,过度和关键操作模式。我们开发新颖的统一需求绑定功能(DBF),以及基于所提出的DBF分析的DVFS方法。我们的实验结果表明,与最先进的计划相比,Letr-MC提供了高达59%(平均每平均24%)节能,并显着提高了低关键项任务的服务水平。

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