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USING OPTIMIZATION FOR THE MIXED EXACT-APPROXIMATE SYNTHESIS OF PLANAR MECHANISMS

机译:使用优化对平面机制的混合精确近似合成

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Exact synthesis algorithms for planar mechanisms for rigid-body guidance are limited by the number of poses the mechanism can position the rigid-body in Euclidean space. The mixed exact-approximate synthesis algorithm described guides a rigid exactly through two positions and approximately through n guiding positions. It breaks down a rigid-body guidance task into n sub-problems of three positions to be solved by an exact synthesis algorithm. A novel algorithm utilizing MATLAB's constrained non-linear optimization tools is proposed. The algorithm can be utilized to find within a bounded design parameter space the RR dyad that exactly reaches two positions and minimizes the distance to n positions. Two such dyads can be synthesized independently and then combined to yield a planar four-bar mechanism. An example using the proposed algorithm to design a planar four-bar mechanism to solve McCarthy's 11-position synthesis problem stated at the 2002 ASME Conference is included.
机译:用于刚体引导的平面机构的精确合成算法受到机构可以将刚性体中的刚性空间中的刚体定位的姿势的限制。混合精确近似合成算法描述了通过两个位置和大致通过N个引导位置引导刚性。它将刚体引导任务分解为通过精确的合成算法解决三个位置的N个问题。提出了一种利用MATLAB约束的非线性优化工具的新算法。该算法可以用于在有界设计参数空间内找到RR Dyad,其完全达到两个位置并最小化到N位置的距离。可以独立地合成两个这样的二元,然后组合以产生平面的四个条机构。使用所提出的算法设计平面的四个条形机制以解决2002年ASME会议上所述的平面四分之一机制的示例。

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