Multi-attribute decision making method for product design schemes based on linguistic Z-numbers

Zhongkui Liu, Qinghua Liu, Danhui Zhang
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Abstract

In the intelligent manufacturing environment, the requirements for products are increasing day by day. Effective decision-making and management of product design schemes can shorten the design cycle and improve product quality. Although many studies use quantitative language for the evaluation of design scheme decision-making, there are few studies considering the degree of decision-maker’s evaluation confidence. A multi-attribute decision-making method of product design scheme based on linguistic Z-numhers (LZNs) is proposed to solve this problem. Firstly, according to the evaluation index, the linguistic term set of scheme evaluation and the evaluation confidence term set of decision-maker are established. Then, the decision matrix of LZNs is constructed and transformed into linguistic value. After that, the technique for order preference by similarity to ideal solution (TOPSIS) under the LZNs environment is utilized to evaluate the product design schemes to obtain the ranking of the scheme and then obtain the optimal scheme. Finally, an example is given to verify the effectiveness of the proposed method. The results show that self-confidence can achieve a more reasonable and practical evaluation of the product design scheme, and it is easier to obtain the best scheme.
基于语言z数的产品设计方案多属性决策方法
在智能制造环境下,对产品的要求日益提高。对产品设计方案进行有效的决策和管理,可以缩短设计周期,提高产品质量。虽然很多研究采用定量语言对设计方案决策进行评价,但考虑决策者评价置信度的研究很少。针对这一问题,提出了一种基于语言z数的产品设计方案多属性决策方法。首先,根据评价指标,建立方案评价的语言项集和决策者的评价置信度项集;然后,构造lzn的决策矩阵,并将其转化为语言值。然后,利用LZNs环境下的理想解相似性排序偏好技术(TOPSIS)对产品设计方案进行评价,得到方案的排序,进而得到最优方案。最后通过一个算例验证了所提方法的有效性。结果表明,自信能实现对产品设计方案的更合理、更实用的评价,更容易获得最佳方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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