A genetic algorithm for the computation of initialization sequences for synchronous sequential circuits

Fulvio Corno, P. Prinetto, M. Rebaudengo, M. Reorda, Giovanni Squillero
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引用次数: 6

Abstract

Testing circuits which do not include a global reset signal requires either complex ATPG algorithms based on 9- or even 256-valued algebras, or some suitable method to generate initialization sequences. This paper follows the latter approach, and presents a new method to the automated generation of an initialization sequence for synchronous sequential circuits. We propose a Genetic Algorithm providing a sequence that aims at initializing the highest number of flip flops with the lowest number of vectors. The experimental results show that the approach is feasible to be applied even to the largest benchmark circuits and that it compares well to other known approaches in terms of initialized flip flops and sequence length. Finally, this paper shows how the initialization sequences can be fruitfully exploited by simplifying the ATPG process.
同步顺序电路初始化序列计算的遗传算法
不包含全局复位信号的测试电路需要基于9-甚至256值代数的复杂ATPG算法,或者一些合适的方法来生成初始化序列。本文采用后一种方法,提出了一种同步时序电路初始化序列自动生成的新方法。我们提出了一种遗传算法,提供了一个序列,旨在用最少的向量初始化最多数量的触发器。实验结果表明,该方法可以应用于最大的基准电路,并且在初始化触发器和序列长度方面优于其他已知方法。最后,本文展示了如何通过简化ATPG过程有效地利用初始化序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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