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Optimized active disturbance rejection control for DC-DC buck converters with uncertainties using a reduced-order GPI observer

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Version 4 2024-03-12, 15:32
Version 3 2023-10-29, 11:56
journal contribution
posted on 2024-03-12, 15:32 authored by Jun Yang, Hongyu Cui, Shihua Li, Argyrios Zolotas
<p>The output voltage regulation problem of a PWM- based DC-DC buck converter under various sources of uncertainties and disturbances is investigated in this paper via an optimized active disturbance rejection control (ADRC) approach. Aiming to practical implementation, a new reduced-order generalized proportional integral (GPI) observer is first designed to estimate the lumped (possibly time-varying) disturbances within the DC- DC circuit. By integrating the disturbance estimation information raised by the reduced-order GPI observer (GPIO) into the output prediction, an optimized ADRC method is developed to achieve optimized tracking performance even in the presence of distur- bances and uncertainties. It is shown that the proposed controller will guarantee the rigorous stability of closed-loop system, for any bounded uncertainties of the circuit, by appropriately choosing the observer gains and the bandwidthfactor. Experimental results illustrate that the proposed control solution is characterised by improved robustness performance against various disturbances and uncertainties compared to traditional ADRC and integral MPC approaches.</p>

History

School affiliated with

  • School of Engineering (Research Outputs)

Publication Title

IEEE Transactions on Circuits and Systems I: Regular Papers

Volume

65

Issue

2

Pages/Article Number

832-841

Publisher

IEEE

ISSN

1549-8328

Date Submitted

2017-07-14

Date Accepted

2017-06-29

Date of First Publication

2017-07-26

Date of Final Publication

2018-02-28

Date Document First Uploaded

2017-07-14

ePrints ID

27856