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Self-Tuning Proportional-Type Performance Recovery Property Output Voltage-Tracking Algorithm for DC-DC Boost Converter

Authors
Kim, Seok-KyoonAhn, Choon Ki
Issue Date
Apr-2019
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Boost-type dc-dc converter; disturbance observer (DOB); output voltage tracking; self-tuning algorithm
Citation
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, v.66, no.4, pp.3167 - 3175
Indexed
SCIE
SCOPUS
Journal Title
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
Volume
66
Number
4
Start Page
3167
End Page
3175
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/66503
DOI
10.1109/TIE.2018.2849982
ISSN
0278-0046
Abstract
This article exhibits an output voltage-tracking control algorithm incorporating a self-tuning algorithm and disturbance observers (DOBs) for dc-dc boost converters without tracking error integrators, considering model nonlinearities, parameter variations, and load uncertainties. The proposed algorithm is designed such that it forces the output voltage to track its target trajectory driven by a time-varying low-pass filter (LPF), despite model-plant mismatches. This paper makes two main contributions. First, it constructs the self-tuning algorithm by updating the closed-loop cut-off frequency in the time-varying LPF to improve the transient tracking performance. Second, it embeds first-order DOBs in the proportional-type nonlinear controller to achieve both performance recovery and the offset-free properties. The experimental verifications are carried out to illustrate the effectiveness of the closed-loop system driven by the proposed technique with a 3-kW prototype dc-dc boost converter; the 46% improvement of the tracking performance is observed, compared with the conventional feedback-linearization controller.
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