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Generalized Majority Voter Design Method for N-Modular Redundant Systems Used in Mission- and Safety-Critical Applications

机译:用于任务关键和安全关键应用的N-模块化冗余系统的通用多数投票者设计方法

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Mission- and safety-critical circuits and systems employ redundancy in their designs to overcome any faults or failures of constituent circuits and systems during the normal operation. In this aspect, the N-modular redundancy (NMR) is widely used. An NMR system is comprised of N identical systems, the corresponding outputs of which are majority voted to generate the system outputs. To perform majority voting, a majority voter is required, and the sizes of majority voters tend to vary depending on an NMR system. Majority voters corresponding to NMR systems are physically realized by enumerating the majority input clauses corresponding to an NMR system and then synthesizing the majority logic equation. The issue is that the number of majority input clauses corresponding to an NMR system is governed by a mathematical combination, the complexity of which increases substantially with increases in the level of redundancy. In this context, the design of a majority voter of any size corresponding to an NMR specification based on a new, generalized design approach is described. The proposed approach is inherently hierarchical and progressive since any NMR majority voter can be constructed from an (N ? 2)MR majority voter along with additional logic corresponding to the two extra inputs. Further, the proposed approach paves the way for simultaneous production of the NMR system outputs corresponding to different degrees of redundancy, which is not intrinsic to the existing methods. This feature is additionally useful for any sharing of common logic with diverse degrees of redundancy in appropriate portions of an NMR implementation.
机译:关键任务和安全关键电路和系统在设计中采用了冗余,以克服正常运行期间组成电路和系统的任何故障或故障。在这方面,N模冗余(NMR)被广泛使用。 NMR系统由N个相同的系统组成,其相应输出被多数投票以生成系统输出。为了进行多数投票,需要多数投票者,并且多数投票者的规模往往取决于NMR系统而变化。通过枚举对应于NMR系统的多数输入子句,然后合成多数逻辑方程,物理上实现与NMR系统相对应的多数投票者。问题在于,与NMR系统相对应的多数输入子句的数量由数学组合控制,其复杂度随着冗余级别的增加而大大增加。在本文中,描述了基于新的通用设计方法设计的与NMR规格相对应的任何尺寸的多数表决者的设计。所提出的方法本质上是分级的和渐进的,因为任何一个NMR多数表决者都可以由(N?2)MR多数表决者以及与这两个额外输入相对应的额外逻辑来构造。此外,所提出的方法为同时产生与不同冗余度相对应的NMR系统输出铺平了道路,这对现有方法不是固有的。此功能对于在NMR实现的适当部分中共享具有不同程度冗余度的公共逻辑的任何共享额外有用。

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