Acceleration feedback improves balancing against reflex delay

Author:

Insperger Tamás1,Milton John2,Stépán Gábor1

Affiliation:

1. Department of Applied Mechanics, Budapest University of Technology and Economics, 1521 Budapest, Hungary

2. W.M. Keck Science Center, Claremont College, Claremont, CA 91771, USA

Abstract

A model for human postural balance is considered in which the time-delayed feedback depends on position, velocity and acceleration (proportional–derivative–acceleration (PDA) feedback). It is shown that a PDA controller is equivalent to a predictive controller, in which the prediction is based on the most recent information of the state, but the control input is not involved into the prediction. A PDA controller is superior to the corresponding proportional–derivative controller in the sense that the PDA controller can stabilize systems with approximately 40 per cent larger feedback delays. The addition of a sensory dead zone to account for the finite thresholds for detection by sensory receptors results in highly intermittent, complex oscillations that are a typical feature of human postural sway.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

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