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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >The Complete Solution of Alt-Burmester Synthesis Problems for Four-Bar Linkages
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The Complete Solution of Alt-Burmester Synthesis Problems for Four-Bar Linkages

机译:四连杆机构的Alt-Burmester综合问题的完整解

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Precision-point synthesis problems for design of four-bar linkages have typically been formulated using two approaches. The exclusive use of path-points is known as "path synthesis," whereas the use of poses, i.e., path-points with orientation, is called "rigid-body guidance" or the "Burmester problem." We consider the family of "Alt-Burmester" synthesis problems, in which some combination of path-points and poses is specified, with the extreme cases corresponding to the classical problems. The Alt-Burmester problems that have, in general, a finite number of solutions include Burmester's original five-pose problem and also Alt's problem for nine path-points. The elimination of one path-point increases the dimension of the solution set by one, while the elimination of a pose increases it by two. Using techniques from numerical algebraic geometry, we tabulate the dimension and degree of all problems in this Alt-Burmester family, and provide more details concerning all the zero-and one-dimensional cases.
机译:用于四连杆机构设计的精确点综合问题通常使用两种方法提出。路径点的专有使用称为“路径合成”,而姿势(即具有方向的路径点)的使用称为“刚体引导”或“ Burmester问题”。我们考虑“ Alt-Burmester”综合问题系列,其中指定了路径点和姿势的某种组合,其中极端情况对应于经典问题。通常,Alt-Burmester问题的解决方案数量有限,其中包括Burmester最初的五个姿势问题以及9个路径点的Alt问题。消除一个路径点会使解集的维数增加一,而消除姿势则使解决方案维数增加二。使用数值代数几何中的技术,我们列出了该Alt-Burmester系列中所有问题的维和度,并提供了有关所有零维和一维情况的更多详细信息。

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