首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Optimum Synthesis of Planar Mechanisms for Path Generation Based on a Combined Discrete Fourier Descriptor
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Optimum Synthesis of Planar Mechanisms for Path Generation Based on a Combined Discrete Fourier Descriptor

机译:基于组合离散傅里叶描述子的路径生成平面机构的最佳综合

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摘要

A two-phase synthesis method is described, which is capable of solving quite challenging path generation problems. A combined discrete Fourier descriptor (FD) is proposed for shape optimization, and a geometric-based approach is used for the scale-rotation-translation synthesis. The combined discrete FD comprises three shape signatures, i.e., complex coordinates (CCs), centroid distance (CD), and triangular centroid area (TCA), which can capture greater similarity of shape. The genetic algorithm-differential evolution (GA-DE) optimization method is used to solve the optimization problem. The proposed two-phase synthesis method, based on the combined discrete FD, successfully solves the challenging path generation problems with a relatively small number of function evaluations. A more accurate path shape can be obtained using the combined FD than the one-phase synthesis method. The obtained coupler curves approximate the desired paths quite well.
机译:描述了一种两阶段合成方法,该方法能够解决非常具有挑战性的路径生成问题。提出了一种组合的离散傅立叶描述符(FD)用于形状优化,并使用了基于几何的方法进行尺度-旋转-平移合成。组合的离散FD包含三个形状特征,即复数坐标(CCs),质心距离(CD)和三角形质心区域(TCA),它们可以捕获更大的形状相似性。遗传算法-差分进化(GA-DE)优化方法用于解决该优化问题。所提出的基于组合离散FD的两阶段合成方法可以用相对较少的功能评估成功解决具有挑战性的路径生成问题。与单相合成方法相比,使用组合FD可以获得更准确的路径形状。所获得的耦合器曲线很好地逼近了所需路径。

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