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A High-Torque Density Compliant Actuator Design for Physical Robot Environment Interaction

机译:用于物理机器人环境交互的高扭矩密度兼容执行器设计

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Compared to the traditional industrial robots that use rigid actuators, the advanced robotic systems are mobile and physically interact with unknown and dynamic environments. Therefore, they need intrinsically safe and compact actuators. In the last two decades, Series Elastic Actuators (SEAs) have been one of the most popular compliant actuators in advanced robotic applications due to their intrinsically safe and compact mechanical structures. The mobility and functionality of the advanced robotic systems are highly related to the torque-density of their actuators. For example, the amount of assistance an exoskeleton robot can provide is determined by the trade-off between the weight and output-torque, i.e., torque-density, of its actuators. As the torque outputs of the actuators are increased, the exoskeleton can expand its capacity yet it generally becomes heavier and bulkier. This has significant impact on the mobility of the advanced robotic systems. Therefore, it is essential to design light-weight actuators which can provide high-output torque. However, this still remains a big challenge in engineering. To this end, this paper proposes a high-torque density SEA for physical robot environment interaction (p-REI) applications. The continuous (peak) output-torque of the proposed compliant actuator is 147Nm (467 Nm) and its weight is less than 2.5kg. It is shown that the weight can be lessened to 1.74, but it comes at cost. The performance of the proposed compliant actuator is experimentally verified.
机译:与使用刚性执行器的传统工业机器人相比,先进的机器人系统具有移动性,并且可以在未知的动态环境中进行物理交互。因此,他们需要本质安全且紧凑的执行器。在过去的二十年中,由于其固有的安全性和紧凑的机械结构,系列弹性执行器(SEA)成为高级机器人应用中最受欢迎的兼容执行器之一。先进的机器人系统的移动性和功能性与其致动器的扭矩密度高度相关。例如,外骨骼机器人可以提供的辅助量由其致动器的重量和输出扭矩即扭矩密度之间的权衡来确定。随着致动器的扭矩输出的增加,外骨骼可以扩展其能力,但是外骨骼通常会变得更重且更笨重。这对高级机器人系统的移动性具有重大影响。因此,设计能够提供高输出扭矩的轻型致动器是必不可少的。但是,这仍然是工程上的巨大挑战。为此,本文提出了一种用于物理机器人环境交互(p-REI)应用的高转矩密度SEA。所提出的柔顺执行器的连续(峰值)输出扭矩为147Nm(467 Nm),重量小于2.5kg。可以将重量减少到1.74,但这是有代价的。提出的柔顺执行器的性能已通过实验验证。

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