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首页> 外文期刊>IEE proceedings. Part G >HyHOPE: fast fault simulator with efficient simulation of hypertrophic faults
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HyHOPE: fast fault simulator with efficient simulation of hypertrophic faults

机译:HyHOPE:快速故障模拟器,可高效模拟肥大性故障

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摘要

In sequential circuit fault simulation, hypertrophic faults, which result from lengthened initialisation sequence in faulty circuits, usually produce a large number of fault events during simulation and require excessive gate evaluations. These faults degrade the performance of fault simulators attempting to simulate them exactly. In the paper, an exact simulation algorithm is developed to identify hypertrophic faults and to minimise their effects during fault simulation. The simulator HyHOPE, based on this algorithm, shows that the average speed-up ratio over HOPE for test vectors generated by STG3 is 1.65. Furthermore, the results indicate that the performance of HyHOPE is close to the approximate simulator, in which hypertrophic faults are simply dropped when they become potentially detected.
机译:在顺序电路故障仿真中,由于故障电路中初始化序列延长而导致的肥大故障,在仿真过程中通常会产生大量故障事件,并且需要进行过多的门评估。这些故障会降低尝试精确模拟它们的故障模拟器的性能。在本文中,开发了一种精确的仿真算法来识别肥大性故障,并在故障仿真期间最大程度地减少其影响。基于此算法的仿真器HyHOPE表明,由STG3生成的测试矢量的平均加速比超过HOPE时为1.65。此外,结果表明,HyHOPE的性能接近于近似模拟器,其中肥大性故障在潜在地被检测到时被简单地丢弃。

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