A new approach for the design of variable structure control (VSC) of nonlinear systems is presented. It is based on a new method called the reaching law method, and is complemented by a sliding-mode equivalence technique. They facilitate the design of the system dynamics in all three modes of a VSC system including the sliding, reaching, and steady-state modes. Invariance and robustness properties are discussed. The approach is applied to a robot manipulator to demonstrate its effectiveness. >
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Nonlinear control systems,Control systems,Nonlinear systems,Sliding mode control,Robustness,Aerodynamics,Nonlinear dynamical systems,Steady-state,Robots,Manipulators