New evaluation methods for conceptual design selection using computational intelligence techniques

被引:0
作者
Hong-Zhong Huang
Yu Liu
Yanfeng Li
Lihua Xue
Zhonglai Wang
机构
[1] University of Electronic Science and Technology of China,School of Mechanical, Electronic and Industrial Engineering
[2] Higher Education Press,undefined
来源
Journal of Mechanical Science and Technology | 2013年 / 27卷
关键词
Conceptual design selection; Design evaluation; Linear physical programming; Fuzzy logic; Neural network; Genetic algorithm; NFWA; Fuzzy compromise decision-making;
D O I
暂无
中图分类号
学科分类号
摘要
The conceptual design selection, which aims at choosing the best or most desirable design scheme among several candidates for the subsequent detailed design stage, oftentimes requires a set of tools to conduct design evaluation. Using computational intelligence techniques, such as fuzzy logic, neural network, genetic algorithm, and physical programming, several design evaluation methods are put forth in this paper to realize the conceptual design selection under different scenarios. Depending on whether an evaluation criterion can be quantified or not, the linear physical programming (LPP) model and the RAOGA-based fuzzy neural network (FNN) model can be utilized to evaluate design alternatives in conceptual design stage. Furthermore, on the basis of Vanegas and Labib’s work, a multi-level conceptual design evaluation model based on the new fuzzy weighted average (NFWA) and the fuzzy compromise decision-making method is developed to solve the design evaluation problem consisting of many hierarchical criteria. The effectiveness of the proposed methods is demonstrated via several illustrative examples.
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页码:733 / 746
页数:13
相关论文
共 61 条
[1]  
Vanegas L V(2001)Application of new fuzzyweighted average (NFWA) method to engineering design evaluation International Journal of Production Research 39 1147-1162
[2]  
Labib A W(2010)A fuzzy integrated methodology for evaluating conceptual bridge design Expert Systems with Applications 37 4910-4920
[3]  
Malekly H(2011)Conceptual design evaluation using interval type-2 fuzzy information axiom Computers in Industry 62 138-146
[4]  
Mousavi S M(2010)A new integrated design concept evaluation approach based on vague sets Expert Systems with Applications 37 6629-6638
[5]  
Hashemi H(2005)An integrated approach to evaluating conceptual design alternatives in a new product development environment International Journal of Production Research 43 687-713
[6]  
Akay D(2011)Evaluation and decision of products conceptual design schemes based on customer requirements Journal of Mechanical Science and Technology 25 2413-2425
[7]  
Kulak O(1996)Linear physical programming: A new approach to multiple objective optimization Transactions on Operational Research 8 39-59
[8]  
Henson B(2007)Collaborative optimization with inverse reliability for multidisciplinary systems uncertainty analysis Engineering Optimization 42 763-773
[9]  
Geng X(2010)Design optimization with discrete and continuous variables of aleatory and epistemic uncertainties Journal of Mechanical Design, Transactions of the ASME 131 031006-175
[10]  
Chu X(2010)A unified framework for an integrated optimization model under uncertainty Journal of Mechanical Design, Transactions of the ASME 132 051008-618