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Efficient circuit specific pseudoexhaustive testing with cellular automata

机译:用蜂窝自动机的高效特定于特定的假伪潜气测试

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Pseudoexhaustive testing of a combinational circuit involves applying all possible input patterns to all its individual output cones. Since it does not assume any fault model, the testing ensures detection of all static detectable faults in the circuit that do not require two-pattern tests. Earlier works on pseudoexhaustive testing usually generate test sets that are several orders of magnitude larger than the minimum size test set required for a specific circuit and are mostly based on LFSRs. This paper presents a novel strategy for constructing circuit-specific pseudoexhaustive test pattern generators based on cellular automata that results in generating minimal pseudoexhaustive test sets for combinational circuits. Experimentation with ISCAS85 benchmarks show that as compared to the LFSRs, Cellular Automata based approach often results in simpler circuitry with lesser number of shift stages and reduced test length. Moreover, the analytical technique developed here is generic in nature and thus can as well be applied for constructing LFSR based pseudoexhaustive test pattern generators.
机译:组合电路的假透过测试涉及将所有可能的输入模式应用于其所有单独的输出锥体。由于它不承担任何故障模型,因此测试确保检测在不需要两型测试的电路中的所有静态可检测故障。早期的伪潜能测试工作通常会生成测试集,这些数量数大于特定电路所需的最小尺寸测试集,主要基于LFSR。本文提出了一种基于蜂窝自动机构建电路特定的伪潜劣的测试模式发生器的新策略,导致为组合电路产生最小的假伪源测试集。使用ISCAS85基准测试表明,与LFSR相比,基于蜂窝自动机的方法通常会导致更简单的电路,换档阶段数量较小,测试长度降低。此外,这里开发的分析技术在自然界中是通用的,因此也可以应用于构建基于LFSR的伪视为测试模式发生器。

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