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Synthesis of Planar Multilink Mechanisms Based on Genetic Algorithms

机译:基于遗传算法的平面多连杆机构综合

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摘要

In this paper we present a method for synthesizing planar multilink mechanisms which can generate desired planar paths. In previous studies, various optimization methods were applied to synthesize path-generation planar multilink mechanisms. The techniques used, however, were often cumbersome and computationally costly to apply. These problems are mainly due to the high nonlinearity of synthesis mechanisms and the existence of many local solutions. Genetic algorithms have recently been noted as a method for solving the problems described above. Therefore, a new method for synthesizing planar multilink mechanisms is presented based on genetic algorithms. The present method require no initial mechanisms and can search for multiple appropriate mechanisms simultaneously. Furthermore, it can be applied to various synthesis problems. We focus on a closed curve adapting synthesis. As an example, configurations of 4-bar and 6-bar planar mechanisms are determined in a practical application.
机译:在本文中,我们提出了一种合成平面多链接机制的方法,该机制可以生成所需的平面路径。在以前的研究中,各种优化方法被应用于合成路径生成平面多链路机制。但是,所使用的技术通常很麻烦并且应用起来计算成本很高。这些问题主要是由于合成机制的高度非线性和许多局部解的存在。近年来,遗传算法被认为是解决上述问题的方法。因此,提出了一种基于遗传算法的平面多连杆机构综合方法。本方法不需要初始机制,并且可以同时搜索多个适当的机制。此外,它可以应用于各种综合问题。我们专注于适应合成的闭合曲线。例如,在实际应用中确定4杆和6杆平面机构的构造。

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