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Raziel Riemer

Senior Academic

Position control of a pneumatic actuator under varying external force

Eddie Zisser, Avishai Sintov, Amir Shapiro,Raziel Riemer

In this paper a high accuracy position control strategy for a pneumatic actuation system subjected to a varying external force is proposed. A novel approach for the mathematical modeling of the pneumatic actuator, based on energy methods, is presented. The Lagrangian is derived from combining the kinetic and potential energies, leading to formulation of the Euler-Lagrange equation of motion. The nonlinear backstepping method is applied to derive the control law, and the derivative of the potential energy is used as the controlled parameter. Experimental results show that tracking a sine wave of 0.1m magnitude produces a maximum error of ±0.008m while the actuator is subjected to a time varying external force with a magnitude ranging from 570N to 1150N.

Publication language English
Pages 1157-1174
Journal Mechanics and Mechanical Engineering
Volume 22
Issue number 4
Publication status Published - 01.01.2018

Keywords

Euler-Lagrange equation of motion
External force
Nonlinear position control
Pneumatic actuator

ASJC Scopus subject areas

General Materials Science
Automotive Engineering
Mechanics of Materials
Mechanical Engineering
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Link to publication in Scopus