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Optimum synthesis of motion generating four-bar mechanisms using alternate error functions

机译:使用替代误差函数的运动产生四连杆机构的最佳综合

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摘要

This paper addresses the problem of optimum synthesis of motion generating four-bar mechanisms using evolutionary methods. Formulation of objective functions based on three different error functions is presented, which ensures that the synthesized mechanism is a crank-rocker, and is free from branch and order defects. One of the three error functions is an obvious choice, whereas the other two error functions are newly formulated making use of the basic theory of planar motion of a rigid body and motion generating four-bar mechanisms. The method of differential evolution is used to carry out the optimization for the three objective functions. Results for three problems are presented, all of which fall in the category of motion generation without prescribed timing. Results obtained using the three error functions are compared with regard to accuracy and computational time, on the basis of which conclusions are drawn regarding their relative performance.
机译:本文讨论了使用进化方法来优化运动生成四连杆机构的综合问题。提出了基于三种不同误差函数的目标函数表述,从而确保了该综合机构为曲柄摇杆,并且没有分支和顺序缺陷。这三个误差函数之一是显而易见的选择,而其他两个误差函数则是根据刚体的平面运动和产生运动的四连杆机构的基本理论重新制定的。使用差分进化方法对三个目标函数进行优化。给出了三个问题的结果,所有这些问题都属于运动产生的类别,而没有规定的时间。比较使用这三个误差函数获得的结果的准确性和计算时间,在此基础上得出有关它们的相对性能的结论。

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