基于n版本编程技术的入侵容忍软件的多数派投票人

Zahra Aghajani, M. A. Azgomi
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引用次数: 2

摘要

在n版本编程(NVP)技术中广泛使用的现有多数投票人的缺点之一是,变体生成的错误结果一致的概率很高。因此,为了提出一种针对敌对环境的基于NVP的容错软件架构,并考虑可能的攻击,需要一种新的投票方案。在本文中,我们提出了一种投票方案来提高二元多数投票人在敌对环境下的正确性,以处理超过一半的变体可能已经被破坏的情况。我们使用随机活动网络(SANs)对三版本编程(3VP)系统的方案进行建模,并测量选民检测正确输出的概率。评估结果表明,该方案能够提高经典多数投票算法检测正确输出的正确性,特别是在方案中采用了入侵检测机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A majority voter for intrusion tolerant software based on N-version programming techniques
One of the drawbacks of the existing majority voters, which are widely used in N-version programming (NVP) technique, is the high probability of agreement on incorrect results generated by variants. Therefore, to propose an intrusion-tolerant software architecture based on NVP for hostile environments and to consider possible attacks, a new voting scheme is required. In this paper, we propose a voting scheme to improve the correctness of the binary majority voters in the hostile environments to treat the situations that more than half of the variants may have been compromised. We have used stochastic activity networks (SANs) to model the scheme for a triple-version programming (3VP) system and measure the probability of detecting the correct outputs by the voter. The evaluation results showed that the proposed scheme can improve the correctness of the classic majority voting algorithms to detect the correct output, especially the intrusion detection mechanisms are used in the scheme.
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