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A Novel N-Input Voting Algorithm for X-by-Wire Fault-Tolerant Systems

机译:X-by-wire容错系统的一种新的N输入投票算法

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摘要

Voting is an important operation in multichannel computation paradigm and realization of ultrareliable and real-time control systems that arbitrates among the results of N redundant variants. These systems include N-modular redundant (NMR) hardware systems and diversely designed software systems based on N-version programming (NVP). Depending on the characteristics of the application and the type of selected voter, the voting algorithms can be implemented for either hardware or software systems. In this paper, a novel voting algorithm is introduced for real-time fault-tolerant control systems, appropriate for applications in which N is large. Then, its behavior has been software implemented in different scenarios of error-injection on the system inputs. The results of analyzed evaluations through plots and statistical computations have demonstrated that this novel algorithm does not have the limitations of some popular voting algorithms such as median and weighted; moreover, it is able to significantly increase the reliability and availability of the system in the best case to 2489.7% and 626.74%, respectively, and in the worst case to 3.84% and 1.55%, respectively.
机译:投票是多通道计算范例和超可靠实时控制系统实现中的一项重要操作,该系统可在N个冗余变量的结果之间进行仲裁。这些系统包括N模块化冗余(NMR)硬件系统和基于N版本编程(NVP)的多样化设计的软件系统。根据应用程序的特征和所选投票者的类型,可以针对硬件或软件系统实施投票算法。本文针对实时容错控制系统,提出了一种新颖的投票算法,适用于N较大的应用场合。然后,它的行为已通过软件在不同的系统输入错误注入场景中实现。通过绘图和统计计算的分析评估结果表明,该新颖算法不受某些流行的投票算法(例如中位数和加权)的限制;此外,它能够在最佳情况下将系统的可靠性和可用性显着提高到分别为2489.7%和626.74%,在最坏情况下分别为3.84%和1.55%。

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