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Exoskeleton for human energy augmentation the Shadow Suit concept: Lower extremity development of the Shadow-Suit

机译:用于增强人体能量的外骨骼“影子服”概念:“影子服”的下肢发展

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To facilitate kinematic changes in expendable exoskeletons, considerations must be placed on the links leading to the end joint(s), where rigid connections with human limbs could lead to uncomfortable experiences for a pilot operating the exoskeleton. To cater to changes in human size while maintaining initial kinematic computation, an additional exoskeleton named the Shadow-Suit is proposed as a control module to provide feedback to the exoskeleton (the outer shell). This Shadow-Suit is an anthropomorphic suit to be attached to the non-anthropomorphic exoskeleton (outer shell), where movements of this suit will be “shadowed” by the outer shell exoskeleton. This paper focuses on the development of the lower extremity of this Shadow-Suit concept. The kinematics of the lower extremity was computed using Denavit-Hartenberg modelling, where the end joint of the lower extremity is predicted during a normal walking stance of the pilot. Sensory feedback was processed by Omron CPM-2A PLC module, in which lag of the reaction of the pneumatic actuator on the outer shell exoskeleton was able to be minimized to the point of ≈1.2 seconds. Result suggest that this concept is able to reduce the excessive torque towards the pilot, while at the same time able to accommodate different pilot limb length without having to change the link length of the exoskeleton.
机译:为了促进消耗性外骨骼的运动学变化,必须考虑通向末端关节的连杆,与人肢的刚性连接可能会使飞行员操作外骨骼时感到不适。为了在保持初始运动学计算的同时满足人体大小的变化,提出了另外一个名为Shadow-Suit的外骨骼作为控制模块,以向外骨骼(外壳)提供反馈。该Shadow-Suit是拟人化的衣服,将其连接到非拟人化的外骨骼(外壳)上,该衣服的运动将被外壳的外骨骼“遮盖”。本文重点介绍了Shadow-Suit概念的下肢发展。使用Denavit-Hartenberg模型计算下肢的运动学,其中在飞行员的正常行走姿势期间预测下肢的末端关节。感觉反馈由Omron CPM-2A PLC模块处理,其中气动执行器在外壳外骨骼上的反应滞后可以最小化到≈1.2秒。结果表明,该构想能够减少朝向飞行员的过多扭矩,而同时又能够适应不同的飞行员肢体长度,而不必更改外骨骼的连杆长度。

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