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Stochastic estimation of human shoulder impedance with robots: an experimental design
Kyungbin Park1, Pyung Hun Chang
1Department of Mechanical Engineering, KAIST, Daejeon, Korea. pkbin98@kaist.ac.kr
Abstract:
Previous studies assumed the shoulder as a hinge joint during human arm impedance measurement. This is obviously a vast simplification since the shoulder is a complex of several joints with multiple degrees of freedom. In the present work, a practical methodology for more general and realistic estimation of human shoulder impedance is proposed and validated with a spring array. It includes a gravity compensation scheme, which is developed and used for the experiments with a spatial three degrees of freedom PUMA-type robot. The experimental results were accurate and reliable, and thus it has shown a strong potential of the proposed methodology in the estimation of human shoulder impedance.

