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A Hybrid History Based Weighted Voting Algorithm for Ultra-Critical Systems

机译:基于混合历史的超关键系统权重投票算法

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There are numerous fault management techniques that can be used to enhance the reliability of a real-time critical system. Fault masking is one of the significant techniques amid those. It is one of the key approaches to improve or maintain the normal behaviour of a system in the appearance of fault. Voting as fault masking method involves the derivation of an output data object from a collection of n input data objects, as prescribed by the requirements and constraints of a voting algorithm. In data fusion, voting is a probable method of combining different data delivered by several sources (e.g. sensors) whose outputs may be mistaken. This paper proposes a new concept of classifying voting algorithms with some new parameters of evaluation. Then using this new concept and some widely known voting algorithms, we propose a hybrid history based weighted voting algorithm. We show that the proposed algorithm gives better and stable performance, in different error ranges, compared to the existing standard voting algorithms.
机译:有许多故障管理技术可用于增强实时关键系统的可靠性。故障掩蔽是其中的重要技术之一。它是改善或维持故障外观中系统正常行为的关键方法之一。投票作为故障掩蔽方法涉及从票据算法的要求和约束的规定,从N个输入数据对象的集合导出输出数据对象的推导。在数据融合中,投票是一种组合由几个来源(例如传感器)传递的不同数据的可能方法,其输出可能被误读。本文提出了一种在评估一些新参数的对投票算法进行分类的新概念。然后使用这种新概念和一些广泛的知名投票算法,我们提出了一种混合历史的加权投票算法。我们表明,与现有的标准投票算法相比,所提出的算法在不同的误差范围内具有更好且稳定的性能。

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