柔性驱动器在机器人应用中的应用

D. Lefeber
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引用次数: 4

摘要

在工业机器人中,机械手或末端执行器的精确定位是迄今为止最常见的应用。该系统旨在满足高机械刚度和高反馈增益的要求,从而提高了位置控制的精度、稳定性和带宽。典型的带有变速箱和传统反馈控制的直流驱动器通常适合此目的。然而,新的机器人技术出现了,其中精确的定位或轨迹跟踪不是主要的设计目标,或者无法弥补传统电动执行器的许多缺点——从这个不同的角度来看——比如高反射惯性、高刚度、低力重比。这些新的机器人应用可以从柔性执行器技术中受益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of Compliant Actuators in Robotic Applications
In industrial robotics - accurate - positioning of manipulators or end effectors is by far the most common application. The system is designed to meet the high mechanical stiffness and high feedback gains required, which improves the accuracy, the stability and the bandwidth of the position control. A typical DC-drive with gearbox and conventional feedback control often suits this purpose. New robotic technologies emerge, however, in which accurate positioning or trajectory tracking is not the primary design goal or unable to compensate for the many drawbacks- from this different point of view - that comes along with conventional electrical actuators, like high reflective inertia, high stiffness, low force-to-weight ratio. These new robotic applications can strongly benefit from compliant actuator technology.
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