标题: 应用主成份分析法于动态系统多重品质特性最佳化之研究
Applying Principal Component Analysis to Achieve the Optimization of Multi-Response in a Dynamic System
作者: 陈俊次
Chun-Tzu Chen
唐丽英
Lee-Ing Tong
工业工程与管理学系
关键字: 田口方法;多重品质特性;动态系统;主成份分析;多目标决策法;理想解类似度顺序偏好法;Taguchi method;multi-response problem;dynamic system;principal component analysis;multiple attribute decision making;technique for order preference by similarity to ideal solution
公开日期: 1999
摘要: 田口方法已在业界实施多年,成效有目共睹,但随着产品设计与生产流程的日益复杂,产品品质的良莠已非单一品质特性最佳化能满足,往往需要同时考量到多重品质特性的同时最佳化,而田口方法仅能适用于单一品质特性最佳化的问题,因此有许多学者陆续提出解决的方法,然而这些方法大部份牵涉到复杂的数学模式,以致鲜少被工程人员应用于实务问题中;此外,为了使产品的设计与使用更具弹性,引入信号因子的动态系统已成为目前的趋势,因此本研究的目的即是发展一套能有效解决动态系统多重品质特性同时最佳化问题的演算程序。
本研究提出的演算流程是根据田口方法的概念求算动态系统的指标,再利用多变量方法中的主成份分析法(Principal Component Analysis,PCA)与多目标决策法(Multiple Attribute Decision Making,MADM)中的理想解类似度顺序偏好法(Technique for Order Preference by Similarity to Ideal Solution,TOPSIS)来整合多重品质特性最佳化的问题,以建构出一个简单实用的方法。本研究最后以一个制备S-CHBE光学活性中间体的实验为例,说明如何应用本研究所发展的动态系统多重品质特性同时最佳化的演算流程,并将其结果与其他解决动态多重品质特性问题的方法做一比较,以验证本研究方法的有效性。
Taguchi method has been widely implemented in industry off-line quality control. Due to the increasing complexity of the product design, more than one quality characteristic must be considered simultaneously to improve the product quality. Since Taguchi method can only optimize one quality characteristic at one time, several optimization techniques for multi-response problems have been developed in recent years. However, these techniques are either troublesome for determining the proper weight for each response or too complicated for engineers to use in practice. In addition, most optimization techniques for multi-response problems are design for static systems only. Hence, optimizing multiple responses simultaneously in a dynamic system becomes an important issue.
This study proposes a procedure which utilizing the dynamic system index of Taguchi method, the principal components analysis(PCA) and technique for order preference by similarity to ideal solution method(TOPSIS) in multiple attribute decision making(MADM) to optimize the multi-response problems in a dynamic system. The optimal factor level settings can be obtained easily and efficiently by the proposed procedure. Finally, the proposed procedure is illustrated by a biological reduction of ethly acetoacetate process experiment. A comparison between the proposed, the conventional and other ways of analyzing multi-response problems in a dynamic system are made to verify the effectiveness of the proposed method.
英文摘要...............................................................................................ii
目录.......................................................................................................iii
图目录...................................................................................................iv
表目录....................................................................................................v
第一章 绪论..........................................................................................1
1.1研究动机与目的..........................................................................1
1.2研究方法...................................................................................... 2
1.3研究架构...................................................................................... 2
第二章 文献探讨................................................................................ 3
2.1田口方法动态特性之简介........................................................ 3
2.2多重品质特性最佳化之相关研究........................................... 4
2.2.1静态系统多重品质特性最佳化之相关研究.................... 4
2.2.2动态系统多重品质特性最佳化之相关研究 .................... 6
2.3主成份分析法.............................................................................. 7
2.3.1主成份分析法的原理........................................................... 7
2.3.2变异图......................................................................................8
2.4TOPSIS法.....................................................................................10
第三章 研究方法................................................................................13
第四章 实例分析................................................................................19
4.1制备S-CHBE光学活性中间体实验之简介............................19
4.2实验规划......................................................................................19
4.3资料分析......................................................................................22
第五章 结论.........................................................................................29
参考文献...............................................................................................31
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT880031014
http://hdl.handle.net/11536/65171
显示于类别:Thesis