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A Built-in Reseeding Technique for LFSR-Based Test Pattern Generation

机译:基于LFSR的测试模式生成的内置播种技术

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Reseeding technique is proposed to improve the fault coverage in pseudo-random testing. However most of previous works on resceding is based on storing the seeds in an external tester or in a ROM. In this paper we present a built-in reseeding technique for LFSR-based test pattern generation. The proposed structure can run both in pseudorandom mode and in reseeding mode. Besides, our method requires no storage for the seeds since in reseeding mode the seeds can be generated automatically in hardware. In this paper we also propose an efficient grouping algorithm based on simulated annealing to optimize test vector grouping. Experimental results for benchmark circuits indicate the superiority of our technique against other reseeding methods with respect to test length and area overhead. Moreover, since the theoretical properties of LFSRs are preserved, our method could be beneficially used in conjunction with any other techniques proposed so far.
机译:为了提高伪随机测试中的故障覆盖率,提出了补种技术。但是,先前有关重新启动的大多数工作都是基于将种子存储在外部测试仪或ROM中的。在本文中,我们提出了一种基于LFSR的测试模式生成的内置重新播种技术。所提出的结构可以在伪随机模式和重新播种模式下运行。此外,我们的方法不需要存储种子,因为在重新播种模式下,可以在硬件中自动生成种子。在本文中,我们还提出了一种基于模拟退火的有效分组算法,以优化测试向量的分组。基准电路的实验结果表明,在测试长度和面积开销方面,我们的技术优于其他补种方法。而且,由于保留了LFSR的理论特性,因此我们的方法可以与迄今为止提出的任何其他技术结合使用。

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