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首页> 外文期刊>Kybernetes: The International Journal of Systems & Cybernetics >A fuzzy based self-check capable computerized MCDM aid tool
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A fuzzy based self-check capable computerized MCDM aid tool

机译:基于模糊的具有自检功能的计算机化MCDM辅助工具

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Purpose - The purpose of this paper is to determine as to develop a fuzzy multi-criteria decision-making (MCDM) algorithm with self-check capability that can solve any manufacturing company's printed circuit boards (PCB) design computer aided design (CAD) tool selection problem and to implement it. Design/methodology/approach - An algorithm that consists of two sub-algorithms that use same inputs and alternative pool is developed, thus self-check capability is introduced. The first sub-algorithm designed as an integration of fuzzy AHP and TOPSIS, where the second sub-algorithm composes of fuzzy analytic network process and TOPSIS. Fuzzy set theory and linguistic variables were utilized to handle uncertainty and usage of verbal expressions, respectively. MATLAB programming language was used for the implementation. The used MCDM methods' and fuzzy set theory's explanations are given along with the literature review prior to real life application of the developed algorithm. Findings - A MCDM algorithm with self-check capability is introduced. Moreover, a practical decision aid tool is generated for the usage of the manufacturing companies that are related with PCB design. Practical implications - A practical computerized MCDM aid tool is generated. Using the tool let the manufacturers, i.e. high-tech device manufacturers, evaluate available PCB CAD design tools with respect to tangible and intangible criteria, and obtain a reliable result. Originality/value - Self-check capability is incorporated into the decision process. Along with this capability, although the decision-making process takes place in a fuzzy environment, result of the algorithm becomes more reliable than the ones deprived of this characteristic. Furthermore, a practical computerized MCDM aid tool is generated.
机译:目的-本文的目的是确定要开发一种具有自检功能的模糊多准则决策(MCDM)算法,该算法可以解决任何制造公司的印刷电路板(PCB)设计计算机辅助设计(CAD)工具选择问题并实施。设计/方法/方法-开发了一种算法,该算法由使用相同输入和备用池的两个子算法组成,因此引入了自检功能。第一个子算法设计为模糊AHP和TOPSIS的集成,第二个子算法由模糊分析网络过程和TOPSIS组成。模糊集理论和语言变量分别用于处理不确定性和言语表达的用法。实现使用MATLAB编程语言。在对所开发算法进行实际应用之前,先对使用的MCDM方法和模糊集理论进行解释,并结合文献进行回顾。结果-引入了具有自检功能的MCDM算法。此外,针对与PCB设计相关的制造公司的使用,生成了实用的决策辅助工具。实际意义-生成了实用的计算机化MCDM辅助工具。使用该工具,制造商,即高科技设备制造商,可以根据有形和无形标准评估可用的PCB CAD设计工具,并获得可靠的结果。原创性/价值-自我检查功能已纳入决策流程。伴随着这种能力,尽管决策过程是在模糊的环境中进行的,但是算法的结果变得比那些没有这种特性的结果更加可靠。此外,生成了实用的计算机化MCDM辅助工具。

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