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Compensation model of multi-attribute decision making and its application to N-version software choice

机译:多属性决策补偿模型及其在N版软件选择中的应用

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摘要

Multi-attribute decision making deals with discrete finite set of alternatives. The solution to the multi-attribute decision making problem is the choice of an alternative from the set of all possible alternatives on the base of usually contradicting attributes. In this paper, a new multi-attribute decision making model is presented. The proposed model develops a linear compensatory process for the interconnected attributes. It concerns the overall ranking of the alternatives based on the attribute-wise ranking as well as the interaction and the combination of the attributes. The compensation model of multi-attribute decision making is applied to N-version software selection. N-version programming is one of the well-known software development approach which ensures high dependability and fault tolerance of software. However, the problem of extra resource involvement arises since the N-version programming stipulates program redundancy. A set of characteristics/attributes have to be considered when choosing an optimal variant of N-version software. The proposed compensation model of multi-attribute decision making provides a solution to this problem. Additionally, a case study on choosing N-version software for a real-life information and control system problem is provided to verify the correctness of our model.
机译:多属性决策处理离散的有限选择集。多属性决策问题的解决方案是在通常相互矛盾的属性的基础上,从所有可能的替代方案中选择一种替代方案。本文提出了一种新的多属性决策模型。所提出的模型为互连的属性开发了线性补偿过程。它涉及基于属性的排名以及属性的交互和组合的替代方案的总体排名。将多属性决策的补偿模型应用于N版本软件的选择。 N版本编程是一种著名的软件开发方法,可确保软件的高度可靠性和容错能力。但是,由于N版本编程规定了程序冗余,因此会出现额外的资源占用问题。选择N版本软件的最佳变体时,必须考虑一组特征/属性。提出的多属性决策补偿模型为该问题提供了解决方案。此外,还提供了一个针对实际信息和控制系统问题选择N版本软件的案例研究,以验证我们模型的正确性。

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