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Trajectory Tracking Control of Human Support Robots via Adaptive Sliding-Mode Approach

Xiaojie Su, Fandi Qing, Hongbin Chang, Shuoyu Wang

2023IEEE Transactions on Cybernetics37 citationsDOI

Abstract

In this article, the tracking problem of the adaptive sliding-mode control (SMC) design for human support robots based on a disturbance observer is investigated. First, a finite-time controller using nonsingular fast terminal SMC is proposed. Then, a robust disturbance observer is developed to estimate system uncertainties and disturbances. Simultaneously, to deal with the unknown bounded disturbance observer error, an adaptive control technology is developed. Furthermore, the proposed controller is synthesized to ensure that the tracking errors can be stabilized in finite time. Finally, simulations are performed to demonstrate that human support robots employing the proposed controller can converge to the desired trajectory.

Topics & Concepts

Control theory (sociology)TrajectoryController (irrigation)Computer scienceRobotTracking errorSliding mode controlObserver (physics)Tracking (education)Control engineeringBounded functionAdaptive controlInvertible matrixControl (management)EngineeringArtificial intelligenceMathematicsNonlinear systemPhysicsPedagogyBiologyPure mathematicsAstronomyPsychologyQuantum mechanicsMathematical analysisAgronomyAdaptive Control of Nonlinear SystemsVehicle Dynamics and Control SystemsControl and Dynamics of Mobile Robots
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