腰椎支撑外骨骼储能-旋转系列弹性驱动器的建模与动态性能研究

Omar Sabah Al-Dahiree, Raja Ariffin Raja Ghazilla, H. Yap, Mohammad Osman Tokhi, Gan Woun Yoong
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引用次数: 1

摘要

辅助外骨骼正在迅速发展,以与人类合作,对人机交互的安全性的需求变得更加重要。系列弹性致动器(SEAs)最近被开发出来,具有各种可能的优势,例如提供安全的人机交互,减少撞击的影响,提高能源效率。然而,实现良好的动态性能仍然是一个挑战,特别是在满足高带宽和良好的顺应性方面。在这一快速发展的研究领域中,人们正在研究将存储装置与旋转系列弹性驱动器(ES-RSEA)相结合的驱动系统,以在保持柔顺特性的同时利用生物力学能。本文提出了用于腰椎支撑外骨骼的储能旋转系列弹性驱动器(ES-RSEA)的建模与控制设计,并对其动态性能进行了分析。ES-RSEA的设计目的是在起重任务期间存储动能并产生辅助扭矩,同时保持良好的顺应特性。从力灵敏度、柔度、传动比和带宽等方面介绍了ES-RSEA的动态性能和特性。仿真研究表明,该驱动器具有高带宽(12.44 Hz)和高力灵敏度,能够提供良好的动态性能。同时,在低频范围内具有良好的柔度和传递力矩性能。PID控制器可以实现高扭矩跟踪性能和良好的动态响应,均方根误差为0.1 N.m。本文展示了ES-RSEA的优异性能和特点,保证了顺应性和高响应,防止了人体意外运动的伤害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Dynamic performance of Energy Storage -Rotary Series Elastic Actuator for Lumbar Support Exoskeleton
Assistive exoskeletons are rapidly being developed to collaborate with humans, and the demand for the safety of human-robot interaction has become more crucial. Series elastic actuators (SEAs) have recently been developed for various possible advantages, such as providing a safe human-robot interaction, reducing the impacts' effects, and increasing energy efficiency. However, achieving good dynamic performances of SEAs is still challenging, especially in fulfilling the high bandwidth with good compliance. In this rapidly growing research field, the actuation system involving the storage device combined with the rotary series elastic actuator (ES-RSEA) is being investigated to exploit the biomechanical energy while maintaining compliance features. In this article, the modeling and control design of the energy storage rotary series elastic actuator (ES-RSEA) for the lumbar support exoskeleton is proposed, and its dynamic performances are analyzed. The ES-RSEA was designed to store kinetic energy during lifting tasks and generate assistive torque while maintaining excellent compliant characteristics. The dynamic performances and characteristics of ES-RSEA are presented in terms of force sensitivity, level of compliance, transmission ratio, and bandwidth. Simulation studies indicate that the actuator can provide excellent dynamic performance through its high bandwidth (12.44 Hz) and high force sensitivity. At the same time, it shows excellent compliance and good torque transmissibility in the low-frequency range. A PID controller can achieve high torque tracking performance and good dynamic response with a root-mean-square (RMS) error of 0.1 N.m. This article demonstrates the excellent performance and characteristics of ES-RSEA to guarantee compliance and high response to prevent injury of undesired human movements.
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