An application of fuzzy optimisation methodology for simultaneous optimisation of continuous and categorical characteristics

Boby John, Pooja Mansharamani
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引用次数: 0

Abstract

Many modern processes have to satisfy customer requirements on more than one output characteristics. The process engineers need to execute the process with an optimum setting which would simultaneously meet the requirements on multiple response variables. This can be achieved by using a simultaneous optimisation of multiple characteristics methodology. A lot of research has been carried out in the field of simultaneous optimisation of characteristics. Most of this research focuses on optimising multiple continuous characteristics only. This paper is a case study on the simultaneous optimisation of continuous and categorical characteristics. The sprint productivity and defect proneness of the agile software development process is simultaneously optimised using fuzzy optimisation approach. The optimum obtained by the suggested methodology is superior to the ones obtained by optimising the responses separately. Even though the case study is on optimising only two characteristics, the methodology can be generalised to optimise many characteristics simultaneously.
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模糊优化方法在连续和分类特性同时优化中的应用
许多现代工艺必须满足顾客对不止一种输出特性的要求。工艺工程师需要以同时满足多个响应变量要求的最佳设置执行工艺。这可以通过使用多种特征方法的同时优化来实现。在特性同步优化方面已经进行了大量的研究。大多数研究只关注于对多个连续特性的优化。本文以连续特性和分类特性同时优化为例进行了研究。采用模糊优化方法对敏捷软件开发过程的sprint生产率和缺陷性进行了同步优化。该方法所得到的最优结果优于单独优化的结果。尽管案例研究只优化了两个特征,但该方法可以推广到同时优化许多特征。
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来源期刊
International Journal of Quality Engineering and Technology
International Journal of Quality Engineering and Technology Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
发文量
1
期刊介绍: IJQET fosters the exchange and dissemination of research publications aimed at the latest developments in all areas of quality engineering. The thrust of this international journal is to publish original full-length articles on experimental and theoretical basic research with scholarly rigour. IJQET particularly welcomes those emerging methodologies and techniques in concise and quantitative expressions of the theoretical and practical engineering and science disciplines.
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