2019•Unpublished venueRequires access

Sliding mode differentiator-based robust backstepping control of nonlinear uncertain system

Fatma Massaoudi, Dorsaf Elleuch, Hafedh Abid, Tarak Damak

Open publisher page 1 citations

Abstract

A new robust technique control is developed in this paper for a nonlinear uncertain system. This technique is based on backstepping method integrating sliding mode differentiator used to estimate the derivative of tracking error. This technique has many objects especially minimizing sensors number and ameliorating control performance. The efficiency of this technique is illustrated by simulation results. The differentiator used is robust in presence of external disturbance.

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What this paper is about

A new robust technique control is developed in this paper for a nonlinear uncertain system. This technique is based on backstepping method integrating sliding mode differentiator used to estimate the derivative of tracking error. This technique has many objects especially minimizing sensors number and ameliorating control performance. The efficiency of this technique is illustrated by simulation results. The differentiator used is robust in presence of external disturbance.

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Available abstract

A new robust technique control is developed in this paper for a nonlinear uncertain system. This technique is based on backstepping method integrating sliding mode differentiator used to estimate the derivative of tracking error. This technique has many objects especially minimizing sensors number and ameliorating control performance. The efficiency of this technique is illustrated by simulation results. The differentiator used is robust in presence of external disturbance.

Key concepts: Differentiator, Backstepping, Control theory (sociology), Nonlinear system, Robust control, Sliding mode control, Computer science, Robustness (evolution)

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