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首页> 外文期刊>Computers & Digital Techniques, IET >Novel hazard-free majority voter for n-modular redundancy-based fault tolerance in asynchronous circuits
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Novel hazard-free majority voter for n-modular redundancy-based fault tolerance in asynchronous circuits

机译:新型无危害多数投票者,用于异步电路中基于n模冗余的容错

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摘要

N-modular redundancy (nmr) is the simplest and most effective fault-tolerant design method for integrated circuits, where n copies of a circuit are employed and a majority voter produces the voted output. asynchronous circuits, however, exhibit various characteristics that limit the applicability of nmr. specifically, the hazard-free property of the output in these circuits must be preserved when hardware providing fault tolerance, such as a majority voter, is added. in this work, we first demonstrate that a typical majority voter design would fail to preserve the hazard-free property of its response. we then propose a hazard-free majority voter design for the triple-modular redundancy fault-tolerance design paradigm, which enters an output-holding state to preserve the output value when transient errors may be sensitised to its inputs. by exploring various conditions to exit from the output-holding state, we describe several extensions of the voter into an nmr one, each yielding a distinct implementation with different tolerance characteristics and area cost. we generalise this extension based on the exit condition and analyse the associated tolerance capability of the extended nmr voter. finally, the proposed hazardfree voter is simulated using hspice, and detailed area cost formulations are derived for the proposed voter designs.
机译:N模块化冗余(nmr)是集成电路最简单,最有效的容错设计方法,其中采用n个电路副本,多数投票者产生投票的输出。但是,异步电路表现出各种特性,限制了nmr的适用性。具体来说,当添加具有容错功能的硬件(例如多数表决器)时,必须保留这些电路中输出的无危险性。在这项工作中,我们首先证明典型的多数选民设计将无法保留其响应的无危险性。然后,我们为三模冗余冗余容错设计范例提出了一种无危险的多数表决器设计,当瞬态错误可能对其输入敏感时,该模型进入输出保持状态以保留输出值。通过探究退出输出保持状态的各种条件,我们将选民的几种扩展描述为一个nmr,每个扩展都产生了具有不同容差特性和面积成本的独特实现。我们根据退出条件对扩展进行了概括,并分析了扩展的核磁共振选民的相关容忍能力。最后,使用hspice对拟议的无风险选民进行了仿真,并为拟议的选民设计导出了详细的区域成本公式。

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  • 来源
    《Computers & Digital Techniques, IET》 |2011年第4期|p.306-315|共10页
  • 作者

    Almukhaizim S.; Sinanoglu O.;

  • 作者单位

    Computer Engineering Department, College of Engineering & Petroleum, Kuwait University, P.O. Box - 5969, Safat, Kuwait;

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  • 正文语种 eng
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