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A New Immunotronic Approach to Hardware Fault Detection Using Symbiotic Evolution

机译:基于共生进化的免疫电子学新方法用于硬件故障检测

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摘要

A novel immunotronic approach to fault detection in hardware based on symbiotic evolution is proposed in this paper. In the immunotronic system, the generation of tolerance conditions corresponds to the generation of antibodies in the biological immune system. In this paper, the principle of antibody diversity, one of the most important concepts in the biological immune system, is employed and it is realized through symbiotic evolution. Symbiotic evolution imitates the generation of antibodies in the biological immune system more than the standard genetic algorithm(SGA) does. It is demonstrated that the suggested method outperforms the previous immunotronic methods with less running time. The suggested method is applied to fault detection in a decade counter (typical example of finite state machines) and MCNC finite state machines and its effectiveness is demonstrated by the computer simulation.
机译:提出了一种基于共生进化的新型免疫学硬件故障检测方法。在免疫电子系统中,耐受条件的产生对应于生物免疫系统中抗体的产生。本文采用抗体多样性的原理,它是生物免疫系统中最重要的概念之一,并通过共生进化得以实现。共生进化比标准遗传算法(SGA)更能模仿生物免疫系统中抗体的产生。结果表明,所建议的方法以更少的运行时间优于以前的免疫电子学方法。将该方法应用于十进制计数器(有限状态机的典型示例)和MCNC有限状态机的故障检测,并通过计算机仿真证明了其有效性。

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