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Trident: A comprehensive timing error resilient technique against choke points at NTC

机译:Trident:全面定时误差弹性技术对NTC的Choke点

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Near Threshold Computing (NTC) systems have been inherently plagued with heightened process variation (PV) sensitivity. Choke points are an intriguing manifestation of this PV sensitivity. In this paper, we explore the probability of minimum timing violations, caused by choke points, in an NTC system and, their non-trivial impacts on the system reliability. We show that conventional timing error mitigation techniques are inefficient in tackling choke point induced minimum timing violations. Consequently, we propose a comprehensive error mitigation technique, Trident, to tackle choke points, at NTC. Trident offers a 1.37x performance improvement and a 1.1x energy efficiency gain over Razor at NTC, with minimal overheads.
机译:接近阈值计算(NTC)系统本身困扰着加强的工艺变化(PV)灵敏度。扼流点是这种光伏敏感性的有趣表现。在本文中,我们探讨了由Choke点,NTC系统中引起的最小时间违规行为的概率,以及它们对系统可靠性的非微不足道的影响。我们表明,传统的定时误差缓解技术在解决扼流点引起的最小定时违规时效率低下。因此,我们在NTC提出了一项全面的错误缓解技术,三叉戟,以解决Choke点。 Trident提供1.37倍的性能提升和NTC的剃须能效率1.1倍,具有最小的开销。

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