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Applications of intuitionistic fuzzy set aggregation operators in transport multi-factor project evaluation

机译:直觉模糊集集合算子在运输多因素项目评价中的应用

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An intuitionistic fuzzy set (IFS) is a generalisation of a fuzzy set characterised by a truth membership function and a false membership function. The former is a lower bound on the grade of membership of the evidence in favour of a particular element belonging to the set and the latter is a lower bound on the negation of that element belonging to the set derived from evidence against that element belonging to the set. A similar concept is a vague set, though vague sets have been shown to be identical to IFSs. In the context of project evaluation, an IFS may be used to represent the degree to which a project satisfies a criterion and the degree to which it does not. Aggregation of such IFSs has been considered in recent years to identify a best project in terms of several criteria or factors. A particular desirable way to aggregate IFS is in terms of an ordered weighted average (OWA) which can be expressed in different forms such as arithmetic and geometric. In an OWA operator, weights are applied to the position of an element in the aggregation. In addition, hybrid OWA operators may be developed to not only weight the position of elements in the aggregation but the element itself. An example is given relating to the Kuranda Range Road upgrade (Queensland, Australia) which is limited by grade, poor overtaking opportunities, poor horizontal alignment and other constraints and the road is expected to become increasingly congested over the next few years. A more flexible multi-factor decision method is used to identify a 'best' project from a set of four alternative projects.
机译:直觉模糊集(IFS)是具有真实隶属度函数和错误隶属度函数的模糊集的概括。前者是对证据的隶属度的下限,有利于属于该集合的特定元素,而后者是对属于集合的该元素的否定的下限,该否定来自于证据对属于该集合的那个元素组。类似的概念是模糊集,尽管已经证明模糊集与IFS相同。在项目评估的背景下,IFS可以用来表示项目满足标准的程度和不满足标准的程度。近年来,已经考虑将此类IFS进行汇总,以根据多个标准或因素来确定最佳项目。聚合IFS的一种特别理想的方式是按照有序加权平均值(OWA)进行,该加权平均值可以以不同的形式表示,例如算术和几何。在OWA运算符中,权重应用于聚合中元素的位置。此外,可以开发混合OWA运算符以不仅加权元素在聚合中的位置,而且加权元素本身。举了一个有关库兰达山脉道路升级(澳大利亚昆士兰州)的例子,该道路受到坡度,超车机会差,水平路线差和其他限制因素的限制,预计该道路在未来几年内将变得越来越拥挤。一种更灵活的多因素决策方法用于从四个备选项目中识别出“最佳”项目。

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