多处理器系统的SEU漏洞及异构多处理器系统的任务调度

M. Sugihara
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引用次数: 8

摘要

利用异构多处理器系统以较低的成本和较短的开发时间构建嵌入式系统已成为一种流行的设计范式。随着技术的进步,嵌入式系统的可靠性问题,即容易受到单事件干扰(seu)的影响,已经成为人们关注的问题。本文研究了异构多处理器系统对单单元攻击的鲁棒性,并提出了最小化异构多处理器系统单单元攻击漏洞的任务调度方法。实验表明,CPU内核性能的提高会降低其可靠性。在实验观察的基础上,提出了一种任务调度方法来降低异构多处理器系统的SEU漏洞。实验结果表明,在实时性的约束下,我们的任务调度技术可以有效地降低系统的漏洞。
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SEU Vulnerability of Multiprocessor Systems and Task Scheduling for Heterogeneous Multiprocessor Systems
Utilizing a heterogeneous multiprocessor system has become a popular design paradigm to build an embedded system at a cheap cost within short development time. A reliability issue for embedded systems, which is vulnerability to single event upsets (SEUs), has become a matter of concern as technology proceeds. This paper presents robustness of heterogeneous multiprocessor systems to SEUs and proposes task scheduling for minimizing SEU vulnerability of them. This paper experimentally shows that increasing performance of a CPU core deteriorates its reliability. Based on the experimental observation, we propose task scheduling for reducing SEU vulnerability of a heterogeneous multiprocessor system. The experimental results demonstrate that our task scheduling technique can reduce much of SEU vulnerability under real-time constraints.
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