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Theory and application of nongroup cellular automata for synthesis of easily testable finite state machines

机译:非群元胞自动机在易测试有限状态机合成中的理论与应用

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摘要

The paper reports some of the interesting properties and relationships of a nongroup cellular automata (CA) and its dual. A special class of nongroup cellular automata denoted as D1*CA is analytically investigated. Based on such analysis, D1*CA has been proposed as an ideal test machine which can be efficiently embedded in a finite state machine to enhance the testability of the synthesized design. A state encoding algorithm has been formulated to embed the D1*CA based test machine in the synthesized FSM while minimizing the hardware overhead. The unique state transition properties of D1*CA are then used in designing an easy testing scheme for the FSM. Experiments on FSM benchmarks have shown that the scheme achieves 100% coverage of all single stuck at faults at the cost of hardware overhead and circuit delay that are comparable, if not better, to that incurred for scan path based designs. However, the major advantage of the scheme is the significant reduction of test time overhead due to integration of an embedded test machine in the design at the synthesis phase.
机译:该论文报告了非组细胞自动机(CA)及其对偶自动机的一些有趣的性质和关系。分析研究了一种特殊的非组细胞自动机,称为D1 * CA。基于这种分析,已提出D1 * CA作为理想的测试机,可以有效地嵌入到有限状态机中以增强综合设计的可测试性。已经制定了状态编码算法,以将基于D1 * CA的测试机嵌入到合成的FSM中,同时将硬件开销降至最低。然后,将D1 * CA的独特状态转换属性用于为FSM设计简单的测试方案。在FSM基准测试中,该方案以硬件开销和电路延迟为代价,实现了所有单点故障的100%覆盖率,与基于扫描路径的设计所产生的开销(甚至更好)相当。但是,该方案的主要优点是,由于在综合阶段将嵌入式测试机集成到设计中,因此大大减少了测试时间。

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