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Fractional-Order Robust Control Design under parametric uncertain approach.
Martins-Gomes, Marcus C; de C Ayres Junior, Florindo A; da Costa Junior, Carlos T; de Bessa, Iury V; da S Farias, Nei Junior; de Medeiros, Renan L P; Silva, Luiz E S; de Lucena Júnior, Vicente F.
Afiliación
  • Martins-Gomes MC; Department of Electricity, Federal University of Pará, Augusto Correa Street, 01, Guamá, 66075-110, Belém, PA, Brazil. Electronic address: marcus.ciro@ifpa.edu.br.
  • de C Ayres Junior FA; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: florindoayres@ufam.edu.br.
  • da Costa Junior CT; Department of Electricity, Federal University of Pará, Augusto Correa Street, 01, Guamá, 66075-110, Belém, PA, Brazil. Electronic address: cartav@ufpa.br.
  • de Bessa IV; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: iurybessa@ufam.edu.br.
  • da S Farias NJ; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: neijunior@ufam.edu.br.
  • de Medeiros RLP; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: renanlandau@ufam.edu.br.
  • Silva LES; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: eduardosales@ufam.edu.br.
  • de Lucena Júnior VF; Department of Electricity, Federal University of Amazonas, General Rodrigo Octavio Avenue, 6200, Coroado I, 69077-000, Manaus, AM, Brazil. Electronic address: vicente@ufam.edu.br.
ISA Trans ; 153: 420-432, 2024 Oct.
Article en En | MEDLINE | ID: mdl-39079783
ABSTRACT
This paper presents a novel methodology that combines fractional-order control theory with robust control under a parametric uncertainty approach to enhance the performance of linear time-invariant uncertain systems with integer or fractional order, referred to as Fractional-Order Robust Control (FORC). In contrast to traditional approaches, the proposed methodology introduces a novel formulation of inequalities-based design, thus expanding the potential for discovering improved solutions through linear programming optimization. As a result, fractional order controllers are designed to guarantee desired transient and steady-state performance in a closed-loop system. To enable the digital implementation of the designed controller, an impulse response invariant discretization of fractional-order differentiators (IRID-FOD) is employed to approximate the fractional-order controllers to an integer-order transfer function. Additionally, Hankel's reduction order method is applied, thus making it suitable for hardware deployment. Experimental tests carried out in a thermal system and the assessment results, based on time-domain responses and robustness analysis supported by performance indices and set value analysis in a thermal system test-bed, demonstrate the improved and robust performance of the proposed FORC methodology compared to classical robust control under parametric uncertainty.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ISA Trans Año: 2024 Tipo del documento: Article Pais de publicación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: ISA Trans Año: 2024 Tipo del documento: Article Pais de publicación: Estados Unidos