4.6 Article

Genetic Algorithm-Based Identification of Fractional-Order Systems

Journal

ENTROPY
Volume 15, Issue 5, Pages 1624-1642

Publisher

MDPI
DOI: 10.3390/e15051624

Keywords

fractional-order systems; parameter identification; genetic algorithm; output error; noise; excitation

Funding

  1. National Natural Science Foundation of China [51075317]
  2. New Century Excellent Talents in University [NCET-12-0453]
  3. International Cooperation Project in Shaanxi Province [2011KW-21]

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Fractional calculus has become an increasingly popular tool for modeling the complex behaviors of physical systems from diverse domains. One of the key issues to apply fractional calculus to engineering problems is to achieve the parameter identification of fractional-order systems. A time-domain identification algorithm based on a genetic algorithm (GA) is proposed in this paper. The multi-variable parameter identification is converted into a parameter optimization by applying GA to the identification of fractional-order systems. To evaluate the identification accuracy and stability, the time-domain output error considering the condition variation is designed as the fitness function for parameter optimization. The identification process is established under various noise levels and excitation levels. The effects of external excitation and the noise level on the identification accuracy are analyzed in detail. The simulation results show that the proposed method could identify the parameters of both commensurate rate and non-commensurate rate fractional-order systems from the data with noise. It is also observed that excitation signal is an important factor influencing the identification accuracy of fractional-order systems.

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