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Mechanical Characterization of Supernumerary Robotic Tails for Human Balance Augmentation

Sajeeva Abeywardena, Eisa Anwar, Stuart Miller, Ildar Farkhatdinov

发表年份
2023
引用次数
8

摘要

Abstract Humans are intrinsically unstable in quiet stance from a rigid body system viewpoint; however, they maintain balance, thanks to neuro-muscular sensory control properties. With increasing levels of balance related incidents in industrial and ageing populations globally each year, the development of assistive mechanisms to augment human balance is paramount. This work investigates the mechanical characteristics of kinematically dissimilar one and two degrees-of-freedom (DoF) supernumerary robotic tails for balance augmentation. Through dynamic simulations and manipulability assessments, the importance of variable coupling inertia in creating a sufficient reaction torque is highlighted. It is shown that two-DoF tails with solely revolute joints are best suited to address the balance augmentation issue. Within the two-DoF options, the characteristics of open versus closed loop tails are investigated, with the ultimate design selection requiring trade-offs between environmental workspace, biomechanical factors, and manufacturing ease to be made.

关键词

TorqueBalance (ability)InertiaRevolute jointWorkspaceComputer scienceKinematicsControl theory (sociology)Degrees of freedom (physics and chemistry)Work (physics)

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