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Flatness-based linear output feedback control for disturbance rejection and tracking tasks on a Chua's circuit
Authors:H Sira-Ramírez  A Luviano-Juárez  J Cortés-Romero
Affiliation:1. CINVESTAV-IPN Av. IPN No. 2508, Departamento de Ingeniería Eléctrica, Sección de Mecatrónica hsira@cinvestav.mx;3. CINVESTAV-IPN Av. IPN No. 2508, Departamento de Ingeniería Eléctrica, Sección de Mecatrónica;4. UPIITA-IPN Av. IPN No. 2580, Colonia Barrio la Laguna Ticomán , CP. 07340, México, D.F;5. Facultad de Ingeniería, Departamento de Ingeniería Eléctrica y Electrónica , Universidad Nacional de Colombia , Carrera 30 No. 45-03 Bogotá, Colombia
Abstract:A linear output feedback controller is developed for trajectory tracking problems defined on a modified version of Chua's circuit. The circuit modification considers the introduction of a flat input, i.e. a suitable external control input channel guided by (a) the induction of the flatness property on a measurable output signal of the circuit and (b) the physical viability of the control input. A linear active disturbance rejection control based on a high-gain linear disturbance observer, is implemented on a laboratory prototype. We show that the state-dependent disturbance can be approximately, but arbitrarily closely, estimated through a linear high-gain observer, called a generalised proportional integral (GPI) observer, which contains a linear combination of a sufficient number of extra iterated integrals of the output estimation error. Experimental results are presented in the output reference trajectory tracking of a signal generated by an unrelated chaotic system of the Lorenz type. Laboratory experiments illustrate the proposed linear methodology for effectively controlling chaos.
Keywords:Chua's circuit  linear control of chaotic systems  observers
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