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A new method for partial scan design based on propagation and justification requirements of faults

机译:一种基于传播和理由对故障的理由要求的部分扫描设计的新方法

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Scan design can be viewed as scanning flip-flops, so that faults, otherwise aborted, are detected by meeting propagation and justification requirements. In this paper, we propose a new method which identifies justification and propagation requirements of aborted faults through combinational test generation and selects flip-flops to meet the requirements. Two procedures, optimal and heuristic, were considered in the process. We implemented the heuristic procedure in a program called BELLONA. BELLONA selects flip-flops progressively to lead to high fault efficiency. Our experimental results show that BELLONA achieves 100% fault efficiency for all circuits experimented with, on average, 19% of flip-flops selected.
机译:扫描设计可以被视为扫描触发器,以便通过满足传播和理由要求来检测故障,否则中止。在本文中,我们提出了一种新的方法,通过组合测试生成识别中止故障的理由和传播要求,并选择触发器以满足要求。在这个过程中考虑了两个程序,最佳和启发式。我们在一个名为Bellona的程序中实施了启发式程序。贝罗纳逐步选择触发器以导致高故障效率。我们的实验结果表明,Bellona平均地为所有电路实现了100%的故障效率,平均选择了19%的触发器。

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