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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Identification of Canonical Basis of Screw Systems Using General-Special Decomposition
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Identification of Canonical Basis of Screw Systems Using General-Special Decomposition

机译:识别使用通用特殊分解螺杆系统的规范基础

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The theory of screws plays a fundamental role in the field of mechanisms and robotics. Based on the rank-one decomposition of positive semidefinite (PSD) matrices, this paper presents a new algorithm to identify the canonical basis of high-order screw systems. Using the proposed approach, a screw system can be decomposed into the direct sum of two subsystems, which are referred to as the general and special subsystems, respectively. By a particular choice of the general subsystem, the canonical basis of the original system can be obtained by the direct combination of the subsystems' principal elements. In the proposed decomposition, not only the canonical form of the screw system but also the corresponding distribution of all those possible base elements can be determined in a straightforward manner.
机译:螺钉理论在机制和机器人专业领域起着基本作用。 基于正半纤维(PSD)矩阵的秩一分解,本文介绍了识别高阶螺杆系统的规范基础的新算法。 使用所提出的方法,螺钉系统可以分解成两个子系统的直接总和,分别称为一般和特殊子系统。 通过一般子系统的特定选择,原始系统的规范基础可以通过子系统的主要元素的直接组合获得。 在所提出的分解中,不仅可以直接地确定所有这些可能的基本元件的规范形式,而且还可以直接地确定所有这些可能的基本元件的相应分布。

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