Fractional-order adaptive fault-tolerant control for a class of general nonlinear systems
Autor: | Meng Ge, Xinrui Hu, Runmei Li, Qi Song |
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Rok vydání: | 2020 |
Předmět: |
Computer science
Applied Mathematics Mechanical Engineering Aerospace Engineering PID controller Ocean Engineering Fault tolerance 01 natural sciences Fractional calculus Inverted pendulum System model Nonlinear system Control and Systems Engineering Control theory Robustness (computer science) 0103 physical sciences Electrical and Electronic Engineering Actuator 010301 acoustics |
Zdroj: | Nonlinear Dynamics. 101:379-392 |
ISSN: | 1573-269X 0924-090X |
DOI: | 10.1007/s11071-020-05768-3 |
Popis: | This paper proposes a series of fractional-order control methods (FOCMs) based on fractional calculus (FC) for a class of general nonlinear systems. In order to deal with the nonlinearities and uncertainties caused by both external and internal factors, the designed control schemes are adaptive, robust, fault-tolerant and do not involve detailed information of the system model. Besides, FC is combined to improve the control performance, especially in higher control accuracy, better anti-interference ability and stronger robustness. For a comprehensive consideration of the practical systems, three different actuator conditions are separately discussed, and the FOCMs are established aiming at these three different situations, respectively, and proved by theoretical analysis. The inverted pendulum system is adopted as simulation object, and the fractional-order schemes are verified and compared with integer-order controller and traditional PID controller. Simulation results make it clear that the proposed FOCMs are superior to other two schemes in control precision, robustness and anti-interference ability. |
Databáze: | OpenAIRE |
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