Robust Invariant Manifold-Based Output Voltage-Tracking Controller for DC/DC Boost Power Conversion Systems

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초록

In this paper, a robust output voltage-tracking algorithm is proposed for dc/dc boost power conversion systems based on a variable invariant manifold. A systematic multivariable approach, considering not only nonlinearity but also the parametric uncertainties, is used for deriving the control law. The proposed method has two features. First, a variable cut-off frequency algorithm is constructed to automatically adjust the invariant manifold, improving the transient output voltage-tracking performance. Second, nonlinear disturbance observers are introduced to enable the control law to exponentially recover the desirable tracking performance without any offset errors in the variable invariant manifold. The performance of the proposed technique is experimentally confirmed with a 3-kW dc/dc boost power conversion system.

키워드

Power conversionManifoldsCutoff frequencyVoltage controlHeuristic algorithmsSystem dynamicsFrequency controlDCDC boost power conversion systemdisturbance observer (DOB)invariant manifoldoutput voltage controlvariable cut-off frequency algorithmDC-DC CONVERTERSLIDING-MODEDESIGN
제목
Robust Invariant Manifold-Based Output Voltage-Tracking Controller for DC/DC Boost Power Conversion Systems
저자
Kim, Seok-KyoonAhn, Choon Ki
DOI
10.1109/TSMC.2019.2899152
발행일
2021-03
유형
Article
저널명
IEEE Transactions on Systems, Man, and Cybernetics: Systems
51
3
페이지
1582 ~ 1589