Robust observer-based DC-DC converter control
This paper develops a novel robust control strategy for DC-DC buck converter subjected to varying load and parameter uncertainty. The proposal exploits the robustness of the sliding mode control (SMC) incorporated with proportional-proportional-integral-observer (PPIO) to assure tight reference volt...
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2019-07-01
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Series: | Journal of King Saud University: Engineering Sciences |
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doaj-dbe07a6744044dbda6ee57eeb7b671f32020-11-25T02:52:06ZengElsevierJournal of King Saud University: Engineering Sciences1018-36392019-07-01313238244Robust observer-based DC-DC converter controlMontadher S. Shaker0Asaad A. Kraidi1Corresponding author.; Department of Electrical Engineering, University of Technology, Baghdad, IraqDepartment of Electrical Engineering, University of Technology, Baghdad, IraqThis paper develops a novel robust control strategy for DC-DC buck converter subjected to varying load and parameter uncertainty. The proposal exploits the robustness of the sliding mode control (SMC) incorporated with proportional-proportional-integral-observer (PPIO) to assure tight reference voltage tracking under a wide range of load change scenarios. Within this framework, an integral sliding mode surface based SMC (ISMC) is designed to guarantee closed-loop robustness against the matched and mismatched disturbance components of the load uncertainty. Subsequently, a novel control structure comprises ISMC and PPIO is presented to overcome the design constraints and to mitigate the undesired transient response accompany the response of the closed-loop system based ISMC. Stability analysis has clearly demonstrated using linear matrix inequality (LMI) and Lyapunov approach. To illustrate the effectiveness of the proposal, a comparison between the closed-loop system responses of SMC, ISMC, and the combined ISMC and PPIO are presented in the simulation results. Keywords: Sliding mode control, Proportional-proportional-integral-observer (PPIO), DC-DC converter, Mismatched uncertainty, Robust controlhttp://www.sciencedirect.com/science/article/pii/S1018363917300685 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Montadher S. Shaker Asaad A. Kraidi |
spellingShingle |
Montadher S. Shaker Asaad A. Kraidi Robust observer-based DC-DC converter control Journal of King Saud University: Engineering Sciences |
author_facet |
Montadher S. Shaker Asaad A. Kraidi |
author_sort |
Montadher S. Shaker |
title |
Robust observer-based DC-DC converter control |
title_short |
Robust observer-based DC-DC converter control |
title_full |
Robust observer-based DC-DC converter control |
title_fullStr |
Robust observer-based DC-DC converter control |
title_full_unstemmed |
Robust observer-based DC-DC converter control |
title_sort |
robust observer-based dc-dc converter control |
publisher |
Elsevier |
series |
Journal of King Saud University: Engineering Sciences |
issn |
1018-3639 |
publishDate |
2019-07-01 |
description |
This paper develops a novel robust control strategy for DC-DC buck converter subjected to varying load and parameter uncertainty. The proposal exploits the robustness of the sliding mode control (SMC) incorporated with proportional-proportional-integral-observer (PPIO) to assure tight reference voltage tracking under a wide range of load change scenarios. Within this framework, an integral sliding mode surface based SMC (ISMC) is designed to guarantee closed-loop robustness against the matched and mismatched disturbance components of the load uncertainty. Subsequently, a novel control structure comprises ISMC and PPIO is presented to overcome the design constraints and to mitigate the undesired transient response accompany the response of the closed-loop system based ISMC. Stability analysis has clearly demonstrated using linear matrix inequality (LMI) and Lyapunov approach. To illustrate the effectiveness of the proposal, a comparison between the closed-loop system responses of SMC, ISMC, and the combined ISMC and PPIO are presented in the simulation results. Keywords: Sliding mode control, Proportional-proportional-integral-observer (PPIO), DC-DC converter, Mismatched uncertainty, Robust control |
url |
http://www.sciencedirect.com/science/article/pii/S1018363917300685 |
work_keys_str_mv |
AT montadhersshaker robustobserverbaseddcdcconvertercontrol AT asaadakraidi robustobserverbaseddcdcconvertercontrol |
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