Dimensional analysis and selective distortion in scaled bilateral telemanipulation

M. Goldfarb
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引用次数: 47

Abstract

This paper addresses the issue of dynamic similarity and intensive property invariance in scaled bilateral manipulation, and offers a design methodology based on these considerations. Dimensional analysis methods are utilized to form the basis of a constrained optimization problem that enables selection of a force scaling factor that minimizes the intensive distortion of the environment. The proposed formulation is applicable to any physical environment, including those that are nonlinear and contain multiple degrees of freedom. Furthermore, the formulation does not require an exact environmental model, provided the parameters that influence the environment are known. The proposed techniques are particularly relevant to bilateral manipulation of a microscopic environment (i.e., macro-micro bilateral manipulation), since such environments are difficult to model exactly and are largely influenced by nonlinear effects.
尺度双侧遥操作的量纲分析与选择性畸变
本文解决了规模双边操作中的动态相似性和密集属性不变性问题,并提供了基于这些考虑的设计方法。利用量纲分析方法来形成约束优化问题的基础,该问题能够选择使环境的强烈扭曲最小化的力缩放因子。所提出的公式适用于任何物理环境,包括非线性和包含多个自由度的物理环境。此外,只要已知影响环境的参数,该提法不需要精确的环境模型。所提出的技术与微观环境的双边操纵(即宏观-微观双边操纵)特别相关,因为这种环境难以精确建模,并且在很大程度上受非线性效应的影响。
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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