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首页> 外文期刊>Applied mathematics and computation >Control of the optimum synthesis process of a four-bar linkage whose point on the working member generates the given path
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Control of the optimum synthesis process of a four-bar linkage whose point on the working member generates the given path

机译:控制四连杆机构的最佳合成过程,该连杆的工作部件上的点会产生给定路径

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摘要

This paper presents the optimum synthesis of a four-bar linkage in which the coupler point performs a path composed of rectilinear segments and a circular arc. The Grashof four-bar linkage whose geometry provides minimum deviations from the given problem for certain parts of the crank cycle is chosen. The motion of the coupler point of the four-bar linkage is controlled within the given values of allowed deviations so that it is always in the prescribed environment of the given point on the observed segment. The synthesis process tends to bring only those path segments that are beyond the boundaries within the prescribed boundary deviations. During the synthesis, allowed deviations change from the initial maximum values to the given minimum ones. Groups of mechanisms realising satisfactory approximation to the desired motion can be obtained by the method of controlled decrease of allowed deviations with the application of the Differential Evolution (DE) algorithm.
机译:本文提出了一种四连杆机构的最佳综合方法,其中耦合器点执行由直线段和圆弧组成的路径。选择了Grashof四连杆机构,该连杆机构的几何形状为曲轴循环的某些部分提供了与给定问题的最小偏差。四连杆机构的耦合点的运动控制在给定的允许偏差值之内,因此始终处于观察段上给定点的指定环境中。合成过程趋向于仅使超出边界的那些路径段在规定的边界偏差之内。在合成期间,允许的偏差从初始最大值更改为给定的最小值。可以通过使用差分演化(DE)算法来控制允许偏差的减小的方法来获得实现对所需运动的满意逼近的一组机械。

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