A family of nonlinear PID-like regulators for a class of torque-driven robot manipulators equipped with torque-constrained actuators

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Abstract

This article addresses the joint position control of torque-driven robot manipulators under actuators subject to torque saturation. Robots having viscous friction, but without gravity vector, are considered. By assuming a static model for the torque actuator (specifically, a model of nonlinear and non-differentiable hard saturation function), a family of nonlinear proportional-integral-derivative-like controllers is proposed. Lyapunov stability theory is used to establish conditions for local asymptotic stability of the closed-loop system. A notable feature of the proposed controller is that stability conditions do not depend on the saturation levels of the actuators. In addition, an experimental study complements the proposed theory.

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Salinas, A., Moreno-Valenzuela, J., & Kelly, R. (2016). A family of nonlinear PID-like regulators for a class of torque-driven robot manipulators equipped with torque-constrained actuators. Advances in Mechanical Engineering, 8(2), 1–14. https://doi.org/10.1177/1687814016628492

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