• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (19): 1-7.

• 论文 •    下一篇

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基于Grassmann线几何的平面柔索驱动并联机构奇异分析

张耀军;张玉茹   

  1. 北京航空航天大学虚拟现实与系统国家重点实验室
  • 发布日期:2011-10-05

Singularity Analysis of Planar Cable-driven Parallel Mechanisms with Grassmann Geometry

ZHANG Yaojun;ZHANG Yuru   

  1. State Key Laboratory of Virtual Reality Technology and Systems, Beihang University
  • Published:2011-10-05

摘要: 柔索驱动并联机构奇异的本质是部分柔索作用在操作末端的力旋量失效,基于此,将柔索对操作末端的作用定义为线矢量,利用Grassmann线几何方法对这些线矢量之间的线性相关性进行判断,从而可以判定柔索驱动并联机构是否处于奇异的位形,并得出平面柔索驱动机构在无奇异设计时必须要满足的几何条件。利用此线几何方法对几类机构的奇异进行判定,并根据平面无奇异的几何条件给出两种无奇异机构。对发生奇异的机构通过改变机构的尺寸或增加部分柔索等方法对机构进行改进,从而避免了机构的奇异。利用雅可比矩阵数值方法对机构改进前后的奇异性进行分析,结果表明改进后机构有效地消除了机构原有的奇异,也说明线几何方法分析柔索驱动并联机构奇异问题的适用性。

关键词: 平面并联机构, 奇异分析, 柔索驱动, 线几何

Abstract: Cable-driven parallel mechanism is singular when some wrenches acting on the cables are deficient. Based on the definition, the cables are defined as line vectors. The linear correlation among cables is analyzed with Grassmann line geometry, and the singularity of the mechanism could be easily testified. The geometry condition of singular free planar mechanism is presented. The singularities of some mechanisms are analyzed by the line geometry method, and the singular free mechanisms are designed based on the geometry condition. According to the geometry condition, the singular mechanisms are improved through changing the dimensions or add some cables to avoid the singularity. At last, the numerical method with Jacobian matrix is used to analyze the singularity, and the result demonstrates that the improved mechanisms avoid the singularity which original mechanisms have. The result also shows that Grassmann line geometry is applicable to the analysis of cable-driven parallel mechanisms.

Key words: Cable-driven, Line geometry, Planar parallel mechanism, Singularity

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