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Fault Emulation for Dependability Evaluation of VLSI Systems

机译:故障仿真,用于VLSI系统的可靠性评估

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Advances in semiconductor technologies are greatly increasing the likelihood of fault occurrence in deep-submicrometer manufactured VLSI systems. The dependability assessment of VLSI critical systems is a hot topic that requires further research. Field-programmable gate arrays (FPGAs) have been recently proposed as a means for speeding-up the fault injection process in VLSI systems models (fault emulation) and for reducing the cost of fixing any error due to their applicability in the first steps of the development cycle. However, only a reduced set of fault models, mainly stuck-at and bit-flip, have been considered in fault emulation approaches. This paper describes the procedures to inject a wide set of faults representative of deep-submicrometer technology, like stuck-at, bit-flip, pulse, indetermination, stuck-open, delay, short, open-line, and bridging, using the best suitable FPGA-based technique. This paper also sets some basic guidelines for comparing VLSI systems in terms of their availability and safety, which is mandatory in mission and safety critical application contexts. This represents a step forward in the dependability benchmarking of VLSI systems and towards the definition of a framework for their evaluation and comparison in terms of performance, power consumption, and dependability.
机译:半导体技术的进步极大地增加了在深亚微米级制造的VLSI系统中发生故障的可能性。 VLSI关键系统的可靠性评估是一个热门话题,需要进一步研究。最近,提出了现场可编程门阵列(FPGA),作为一种加快VLSI系统模型中的故障注入过程(故障仿真)的方法,并降低了修复由于其在第一个步骤中的适用性而导致的错误的成本。开发周期。但是,在故障仿真方法中仅考虑了减少的一组故障模型,主要是卡在模式和位翻转模式。本文介绍了使用最佳方法注入代表深亚微米技术的各种故障的过程,例如卡死,位翻转,脉冲,不确定,卡死,延迟,短路,断路和桥接合适的基于FPGA的技术。本文还为比较VLSI系统的可用性和安全性设置了一些基本准则,这在任务和安全关键型应用程序环境中是必不可少的。这代表着VLSI系统的可靠性基准测试向前迈出了一步,并朝着定义框架进行评估和比较,以评估其性能,功耗和可靠性。

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