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Non-intrusive design of concurrently self-testable FSMs

机译:非侵入性的自我验证FSMS的设计

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We propose a methodology for non-intrusive design of concurrently self testable FSMs. The proposed method is similar to duplication wherein a replica of the original FSM acts as a predictor that immediately detects potential faults by comparison to the original FSM. However, instead of duplicating the complete FSM, the proposed method replicates only a minimal portion adequate to detect all possible faults, yet at the cost of introducing potential fault detection latency. Furthermore, in contrast to concurrent error detection approaches, which presume the ability to re-synthesize the FSM and exploit parity-based state encoding, the proposed method is non-intrusive and does not interfere with the encoding and implementation of the original FSM. Experimental results on FSMs of various sizes and densities indicate that the proposed method detects 100% of the faults with very low average fault detection latency. Furthermore, a hardware overhead reduction of up to 33% is achieved, as compared to duplication-based concurrent error detection.
机译:我们提出了一种用于非侵入性设计的方法的方法,同时自我测试的FSM。所提出的方法类似于复制,其中原始FSM的复制品充当预测器,其通过与原始FSM比较立即检测潜在故障。然而,该提出的方法而不是重复完整的FSM,而是仅对最小的部分进行了复制以检测所有可能的故障,但尚未以引入电位故障检测延迟的成本。此外,与并发错误检测方法相比,这预设了重新合成FSM和基于奇偶级的奇偶校验的状态编码的能力,所提出的方法是非侵入性的,并且不会干扰原始FSM的编码和实现。各种尺寸和密度FSM的实验结果表明,所提出的方法检测到具有非常低的平均故障检测延迟的故障100%。此外,与基于重复的并发错误检测相比,实现了高达33%的硬件减少。

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