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Composite Fast Terminal Sliding Mode Control of DC-DC Converters for Renewable Energy Systems PROCEEDINGS ARTICLE published 9 October 2022 in 2022 IEEE Industry Applications Society Annual Meeting (IAS) Research funded by Aeronautical Science Foundation of China (ASFC-20200019053004) |
Continuous Finite‐Time Sliding Mode Control for Uncertain Nonlinear Systems with Applications to DC‐DC Buck Converters JOURNAL ARTICLE published January 2019 in Asian Journal of Control Research funded by National Natural Science Foundation of China (61573099,61473080) |
Optimized sliding mode control for DC-DC converters using simplex-PSO techniques PROCEEDINGS ARTICLE published October 2013 in 3rd International Conference on Systems and Control |
A Saturated Higher Order Sliding Mode Control Approach for DC/DC Converters PROCEEDINGS ARTICLE published 27 June 2022 in 2022 IEEE 17th International Conference on Control & Automation (ICCA) |
Neural Network Based Sliding Mode Control for DC-DC Converters JOURNAL ARTICLE published February 2011 in Advanced Materials Research |
Chattering-Free Event-Trigger Fast Recovery Stable Digital Sliding Mode Control in DC-DC Converters PROCEEDINGS ARTICLE published 20 March 2022 in 2022 IEEE Applied Power Electronics Conference and Exposition (APEC) Research funded by Science and Engineering Research Board (CRG/2020/004702) |
Using Constant Switching Frequency Control in Linear-Assisted DC-DC Switching Converters for Photovoltaic Solar Regulators JOURNAL ARTICLE published March 2015 in Renewable Energy and Power Quality Journal |
A New Sliding Mode Controller for DC/DC Converters in Photovoltaic Systems JOURNAL ARTICLE published 2013 in Journal of Energy |
Fixed-Time Sliding Mode Control for DC-DC Converters with both Matched and Mismatched Disturbances Based on Disturbance Observer PROCEEDINGS ARTICLE published 29 August 2023 in 2023 12th International Conference on Renewable Energy Research and Applications (ICRERA) |
Sliding mode control for DC-DC buck and boost converters BOOK CHAPTER published 31 December 2022 in Power Electronics for Next-Generation Drives and Energy Systems. Volume 1: Converters and control for drives |
Analysis of switching frequency reduction methods applied to sliding mode controlled DC-DC converters PROCEEDINGS ARTICLE published in [Proceedings] APEC '92 Seventh Annual Applied Power Electronics Conference and Exposition |
Sliding mode control of electric power system comprised of fuel cells, DC-DC boost converters and ultracapacitors PROCEEDINGS ARTICLE published June 2013 in 2013 American Control Conference |
Sliding Mode Control of Parallel DC/DC Converters PROCEEDINGS ARTICLE published 16 October 2023 in IECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society Research funded by National Natural Science Foundation of China (51307035) |
Sliding Bifurcations and Sliding Mode Controller for a Two-Cell DC/DC Buck Converter BOOK CHAPTER published 2017 in Applications of Sliding Mode Control |
Maximum Power Point Tracking under simplified sliding mode control based DC-DC boost converters JOURNAL ARTICLE published 2 July 2021 in PRZEGLĄD ELEKTROTECHNICZNY |
Model-Based Quasi-Sliding Mode Control with Loss Estimation Applied to DC–DC Power Converters JOURNAL ARTICLE published 24 September 2019 in Electronics |
Robust Passivity Based Control with Sliding Mode for DC-to-DC Converters PROCEEDINGS ARTICLE published 2006 in 2006 SICE-ICASE International Joint Conference |
Sliding-mode control of bidirectional dc-dc converter for supercapacitor energy storage applications PROCEEDINGS ARTICLE published June 2010 in SPEEDAM 2010 |
UDE-based sliding mode control of DC–DC power converters with uncertainties JOURNAL ARTICLE published February 2019 in Control Engineering Practice Research funded by Natural Science Foundation of Shanghai, China (17ZR1414200) | National Natural Science Foundation of China (51667015) |
Sliding mode control with inductor current observer for interleaved DC-DC converters PROCEEDINGS ARTICLE published July 2017 in 2017 IEEE 18th Workshop on Control and Modeling for Power Electronics (COMPEL) |