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Coupler-Curve Synthesis of a Planar Four-Bar Mechanism Using NSGA-II

机译:使用NSGA-II的平面四杆机构的耦合曲线合成

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This paper applies a genetic algorithm-based optimisation procedure, namely, NSGA-II, to the problem of synthesis of a four-bar mechanism. The internal parameters of NSGA-II are tuned using a Design of Experiments (DoE) procedure to enhance the quality of the final results. Constraints are handled through a penalty formulation. Further, a scaling function is introduced, which transforms the penalty terms in a manner that leads to faster convergence of the solutions. The theoretical developments are illustrated via applications to two well-studied problems in the domain of coupler-curve synthesis. A comparison of the results vis-a-vis existing ones shows that the proposed enhancements of the basic scheme of NSGA-II deliver promising improvements in terms of accuracy, and rate of convergence of the solutions.
机译:本文将基于遗传算法的优化程序NSGA-II应用于四杆机构的综合问题。使用实验设计(DoE)程序调整NSGA-II的内部参数,以提高最终结果的质量。约束通过惩罚公式来处理。此外,引入了缩放函数,该缩放函数以导致解决方案更快收敛的方式来变换惩罚项。通过对耦合器曲线综合领域中两个经过充分研究的问题的应用,说明了理论发展。将结果与现有结果进行比较,结果表明,NSGA-II基本方案的拟议增强功能在准确性和解决方案的收敛速度方面均提供了令人鼓舞的改进。

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