压缩空气动力人体外骨骼套装的建模与开发

Manthan Pawar, S. Ohol, Ashutosh Patil
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引用次数: 2

摘要

外骨骼用于力量和行动辅助,增加了佩戴它的人的各种能力。从根本上说,外骨骼被用于携带重型武器、搬运物资和灾害管理。目前,主动式外骨骼面临的问题是由于用于使其活动的致动器造成的功耗。此外,由于刚性致动器,它的运动次数和自由度也受到限制。在COEP机器人研究圈,我们已经建造了一个压缩空气驱动的人类外骨骼套装(CAPHES),使用它我们可以举起武器或重达35公斤的物体,甚至没有感觉。为此,我们开发了主动上肢外骨骼(AUBE)和被动下肢外骨骼(PLBE)。AUBE由我们在实验室开发的气动气肌(PAM)执行器组成。由于这些软致动器,外骨骼比具有刚性致动器的外骨骼具有更多的自由度。PLBE有助于将要携带的重量和外骨骼的重量直接转移到地面。使用PLBE外骨骼也可以用作无椅椅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Development of Compressed Air Powered Human Exoskeleton Suit Human Exoskeleton
Exoskeletons are used for force and mobility assistance which increases the various types of abilities of the person wearing it. Fundamentally, exoskeletons are used in carrying heavy weapons, material handling and disaster management. The problems faced by todays active exoskeletons are power consumption due to actuators used to make it active. Also, it has restricted number motions and degrees of freedoms due to rigid actuators. In Robot Study Circle, COEP, we have built a Compressed Air Powered Human Exoskeleton Suit (CAPHES) using which we can lift a weapon or a object weighing upto 35kgs without even feeling it. For that we have developed active upper body exoskeleton (AUBE) and passive lower body exoskeleton(PLBE). AUBE consists of Pneumatic Air Muscle (PAM) Actuators which we have developed in our lab. Due to these soft actuators, the exoskeleton has more number of degrees of freedom than exoskeletons with rigid actuators. PLBE helps in transferring the weight to be carried and the weight of the exoskeleton directly to the ground. Using PLBE exoskeleton can be also used as a chair-less chair.
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