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MINIMUM TORQUE PLACEMENT OF A KINEMATIC STRUCTURE

机译:运动结构的最小扭矩位置

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摘要

A general formulation for calculating where a kinematic structure must be positioned (and oriented) is presented. This study is applicable to both humans; to place a human in a working environment while minimizing stress on extremity joints, or for robot manipulators. In recent years, there has been focused interest on ergonomics and ergonomic design with emphasis on the disposition of a worker while performing tasks at prolonged periods of time and where repetitive motions are exerted. To a great extent, the effect of stress on a joint is major factor leading to potential injuries. We believe there is a unique opportunity for the mechanical engineering community to make a significant contribution to this field. Furthermore, because the ergonomic design process encompasses many parameters, it is evident that it must be formulated using optimization methods where the best possible solution is calculated from an infinite number of solutions. This study presents a rigorous formulation for placement of a worker based on minimizing the torque (as a cost function) induced at a joint, whereby satisfying constraints imposed by the given task. The reverse of this problem is the calculation of the coordinates of a number of target points in the reachable space of a fixed kinematic structure, which is also addressed. Both problems are mathematically formulated and numerically solved. Examples are illustrated.
机译:介绍了用于计算运动结构必须放置(和定向)的位置的一般公式。这项研究适用于人类。将人放置在工作环境中,同时最大程度地减小四肢关节或机器人操纵器上的压力。近年来,人们对人体工程学和人体工程学设计的关注日益浓厚,重点是在长时间执行任务并施加重复动作的同时,安排工人的性格。在很大程度上,应力对关节的影响是导致潜在伤害的主要因素。我们相信机械工程界将有一个独特的机会来为这一领域做出重大贡献。此外,由于人机工程学设计过程包含许多参数,因此很明显,必须使用优化方法来制定它,其中从无限数量的解决方案中计算出最佳的解决方案。这项研究基于最小化在关节处产生的扭矩(作为成本函数),提出了一种严谨的工人安置方法,从而满足了给定任务施加的约束。这个问题的反面是固定运动结构的可到达空间中多个目标点的坐标的计算,这也是解决的问题。这两个问题都可以通过数学公式化和数值解决。举例说明。

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