A Kinematic Synthesis Methodology for P-Drivable Spatial Single Degree of Freedom Mechanisms to Avoid Singularities

Mohammad Z. Khan, Jian Liu, D. Myszka, Andrew P. Murray
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Abstract

For a single degree of freedom spatial mechanism, a reference frame attached to any of its links produces a continuous motion of this frame. Given the progression of this frame from the start through the end of the mechanism's motion, this paper seeks to identify specific points relative to this moving reference frame. The points of interest are those that can be coupled with a second point determined in the fixed frame to act as the end joint locations for a spherical-prismatic-spherical (SPS) driving chain. If the selection of the point pair is made such that the change in distance between them as the mechanism moves is strictly monotonic, then the SPS chain they define is potentially capable of driving the mechanism over the desired range of motion. This motion is referred to as locally P-drivable because a global solution is not ensured by the process proposed herein. This synthesis process can avoid singularities encountered by actuating the mechanism at one of its original joints. The proposed approach enables the dimensional synthesis of a single degree-of-freedom mechanism to focus on creating circuit-defect-free solutions without concern for potential singular positions. The actuating chain can then be determined as a separate step in the synthesis process. This paper also considers motions that are not P-drivable and the specialization to planar systems with the synthesis of a P-drivable RPR chain.
避免奇异性的可 P 驱动空间单自由度机构运动合成方法学
对于单自由度空间机构而言,连接到其任何一个环节的参照系都会产生连续的运动。考虑到该参照系从机构运动的开始到结束的过程,本文试图确定相对于该运动参照系的特定点。这些点可以与固定框架中确定的第二个点耦合,作为球面-棱镜-球面(SPS)驱动链的末端关节位置。如果选择的点对在机构运动时它们之间的距离变化是严格单调的,那么它们定义的 SPS 链就有可能在所需的运动范围内驱动机构。这种运动被称为局部 P 可驱动运动,因为本文提出的流程并不能确保获得全局解决方案。这种合成过程可以避免在机构的一个原始关节处驱动机构所遇到的奇异现象。所提出的方法可使单自由度机构的尺寸合成专注于创建无电路缺陷的解决方案,而无需考虑潜在的奇异位置。然后,执行链可作为合成过程中的一个单独步骤来确定。本文还考虑了不可 P 驱动的运动以及平面系统的特殊化,并合成了可 P 驱动的 RPR 链。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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