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Engineering design optimization as a fuzzy control process

机译:工程设计优化作为模糊控制过程

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摘要

The optimization process can be viewed as a closed-loop control system. Traditional "controllers", the numerical optimization algorithms, are usually "crisply" designed for well defined mathematical models. However, when applied to engineering design optimization problems in which function evaluations can be expensive and imprecise, very often the crisp algorithms will become impractical or will not converge. A common strategy for designers is to monitor the optimization process and keep "tuning" it in an interactive manner, using their judgment on the information obtained from the previous iterations, and their knowledge of the problem. This paper presents how the heuristics of this human supervision can be modeled into the optimization algorithms using fuzzy control concept. A fuzzy version of sequential linear programming, which is very popular in engineering design optimization, is used to demonstrate this idea. Fuzzy rules, which describe the human supervision during the optimization process, are combined with the numerical rules of the original algorithm to refine the output of each iteration. Simple numerical examples are used to show the feasibility and practicality of this approach.
机译:优化过程可以看作是一个闭环控制系统。传统的“控制器”,即数值优化算法,通常是为定义明确的数学模型而“精心设计”的。但是,当将其应用于功能设计可能昂贵且不精确的工程设计优化问题时,通常,清晰的算法将变得不切实际或无法收敛。设计人员的常用策略是监视优化过程,并以交互的方式对其进行“调整”,即使用他们对先前迭代获得的信息的判断以及对问题的了解。本文介绍了如何使用模糊控制概念将这种人类监督的启发式方法建模为优化算法。顺序线性规划的模糊版本在工程设计优化中非常流行,用于证明这一思想。描述优化过程中人为监督的模糊规则与原始算法的数值规则相结合,以细化每次迭代的输出。通过简单的数值例子说明了该方法的可行性和实用性。

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