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A New Monitor Insertion Algorithm for Intermittent Fault Detection

机译:一种新的间歇故障检测监控插入算法

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The dependability of highly dependable systems relies on the reliability of its components and interconnections. One of the most challenging faults that threatens the reliability of interconnections in a system are intermittent resistive faults (IRFs). They may occur randomly in time, duration and amplitude in every interconnection. The occurrence rate can vary from a few nanoseconds to months. As a result, evoking and detecting such faults is a major challenge. In this paper, IRF detection at the chip level has been tackled by utilising a fully digital insitu IRF monitor. This paper introduces a new algorithm for inserting IRF monitors in a design. The goal of this algorithm is to minimise the number of IRF monitors while providing a high fault coverage for IRFs. The algorithm has been validated using software-based fault injection. The simulation results show that the proposed algorithm improves the IRF coverage at the chip level at the cost of a small area and power-consumption overhead.
机译:高度可靠的系统的可靠性取决于其组件和互连的可靠性。威胁系统互连可靠性的最具挑战性的故障之一是间歇性电阻故障(IRF)。它们可能在每个互连中的时间,持续时间和幅度中随机出现。发生率可以从几纳秒到数月不等。结果,引起和检测这种故障是主要的挑战。在本文中,通过使用全数字原位IRF监视器解决了芯片级的IRF检测问题。本文介绍了一种在设计中插入IRF监视器的新算法。该算法的目标是在为IRF提供高故障覆盖率的同时,最大程度地减少IRF监控器的数量。该算法已使用基于软件的故障注入进行了验证。仿真结果表明,该算法以较小的面积和功耗为代价,提高了芯片级的IRF覆盖率。

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