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Design of a power-asymmetric actuator for a transtibial prosthesis

H Bartlett, Brian E. Lawson, Michael Goldfarb

Year
2017
Citations
6

Abstract

This paper presents the design and characterization of a power-asymmetric actuator for a transtibial prosthesis. The device is designed to provide the combination of: 1) joint locking, 2) high power dissipation, and 3) low power generation. This actuator functionality allows for a prosthesis to be designed with minimal mass and power consumption relative to a fully-powered robotic prosthesis while maintaining much of the functionality necessary for activities of daily living. The actuator achieves these design characteristics while maintaining a small form factor by leveraging a combination of electromechanical and hydraulic components. The design of the actuator is described herein, and results of an experimental characterization are provided that indicate that the actuator is capable of providing the functional capabilities required of an ankle prosthesis in a compact and lightweight package.

Keywords

ActuatorComputer sciencePower (physics)Electro-hydraulic actuatorMechanical engineeringEngineeringAutomotive engineeringControl engineeringArtificial intelligence

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