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Using genetic programming and decision trees for generating structural descriptions of four bar mechanisms

机译:使用遗传规划和决策树生成四个条形机构的结构描述

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摘要

Four bar mechanisms are basic components of many important mechanical devices. The kinematic synthesis of four bar mechanisms is a difficult design problem. A novel method that combines the genetic programming and decision tree learning methods is presented. We give a structural description for the class of mechanisms that produce desired coupler curves. Constructive induction is used to find and characterize feasible regions of the design space. Decision trees constitute the learning engine, and the new features are created by genetic programming.
机译:四杆机构是许多重要机械设备的基本组件。四连杆机构的运动学综合是一个困难的设计问题。提出了一种结合遗传规划和决策树学习方法的新方法。我们对产生所需耦合器曲线的机制类别进行结构描述。构造归纳法用于查找和表征设计空间的可行区域。决策树构成了学习引擎,而新功能则通过基因编程来创建。

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