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Systematic optimal design procedures for the Gough-Stewart platform used as motion simulators

机译:用于运动模拟器的Gough-Stewart平台的系统优化设计程序

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摘要

Purpose - The purpose of this paper is to present systematic optimal design procedures for the Gough-Stewart platforms used as engineering motion simulators. Design/methodology/approach - Three systematic optimal design procedures are proposed to solve the engineering design problems for the Gough-Stewart platform used as motion simulators. In these systematic optimal design procedures, two contradicting design optimality criteria with good representations of performances of the Gough-Stewart platforms are chosen as the objective functions. In addition, the two objective function optimization problems are solved by using the multi-objective evolutionary algorithms. Findings - In the systematic optimal design procedures, multiple compromised design solutions are found by using Elitist Non-Dominated Sorting Genetic Algorithm version II in the primary design stage, and many candidates can be used in the secondary design stage for higher decisions. Two higher decision methods have been presented to choose the final solutions. Originality/value - This paper proposes three systematic optimal design procedures to solve the practical design problems of the Gough-Stewart platforms used as motion simulators, which are very important for the engineering designers.
机译:目的-本文的目的是为用作工程运动模拟器的Gough-Stewart平台提供系统的最佳设计程序。设计/方法/方法-为解决用作运动模拟器的Gough-Stewart平台的工程设计问题,提出了三种系统的最佳设计程序。在这些系统的优化设计程序中,选择了两个相互矛盾的设计最优性标准作为目标函数,它们具有良好的Gough-Stewart平台性能表示。另外,使用多目标进化算法解决了两个目标函数优化问题。发现-在系统的最佳设计程序中,通过在主要设计阶段使用Elitist非支配排序遗传算法版本II找到了多个折衷的设计解决方案,并且在次要设计阶段可以使用许多候选方案来做出更高的决策。提出了两种更高的决策方法来选择最终解决方案。原创性/价值-本文提出了三种系统的最佳设计程序,以解决用作运动模拟器的Gough-Stewart平台的实际设计问题,这对工程设计人员而言非常重要。

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