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Immunotronics - novel finite-state-machine architectures with built-in self-test using self-nonself differentiation

机译:Immunotronics - 新型有限状态机架构,内置自我测试,使用自我非自我差异

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摘要

A novel approach to hardware fault tolerance is demonstrated that takes inspiration from the human immune system as a method of fault detection. The human immune system is a remarkable system of interacting cells and organs that protect the body from invasion and maintains reliable operation even in the presence of invading bacteria or viruses. This paper seeks to address the field of electronic hardware fault tolerance from an immunological perspective with the aim of showing how novel methods based upon the operation of the immune system can both complement and create new approaches to the development of fault detection mechanisms for reliable hardware systems. In particular, it is shown that by use of partial matching, as prevalent in biological systems, high fault coverage can be achieved with the added advantage of reducing memory requirements. The development of a generic finite-state-machine immunization procedure is discussed that allows any system that can be represented in such a manner to be "immunized" against the occurrence of faulty operation. This is demonstrated by the creation of an immunized decade counter that can detect the presence of faults in real time
机译:展示了一种新的硬件容错方法,该方法从人类免疫系统中汲取了灵感,作为一种故障检测方法。人体免疫系统是一种与细胞和器官相互作用的出色系统,即使存在入侵的细菌或病毒,也可以保护人体免受入侵并保持可靠的运行。本文旨在从免疫学的角度探讨电子硬件容错领域,目的是展示基于免疫系统运行的新方法如何补充和创造新方法来开发可靠硬件系统的故障检测机制。特别地,示出了通过使用部分匹配(如在生物系统中普遍存在),可以实现高故障覆盖率,同时具有减少存储需求的附加优点。讨论了通用有限状态机免疫程序的开发,该程序允许对可以以这种方式表示的任何系统进行“免疫”,以防止出现错误的操作。这可以通过创建一个可免疫的十进制计数器来证明,该计数器可以实时检测故障的存在

著录项

  • 作者

    Bradley D.W.; Tyrrell A.M.;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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