Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode
A dc-dc zeta converter can be used to step-up or step-down input voltage. In order to stabilize the output voltage, a control subsystem needs to be deployed. This paper presents state-feedback controller for the dc-dc zeta converter using optimal control design technique. Performance comparison is m...
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my.utem.eprints.251672022-05-09T15:54:01Z http://eprints.utem.edu.my/id/eprint/25167/ Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode Sarkawi, Hafez Yoshito, Ohta A dc-dc zeta converter can be used to step-up or step-down input voltage. In order to stabilize the output voltage, a control subsystem needs to be deployed. This paper presents state-feedback controller for the dc-dc zeta converter using optimal control design technique. Performance comparison is made with proportional-integral (PI) controller. The system’s response subject to load perturbation is presented using PSIM® simulation tool. The proposed optimal control exhibits better control duty-cycle response thus better margin of stability compared to PI control. 2016-09-20 Conference or Workshop Item PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25167/1/SICE2016%28Conference%29_Published%20-%20LQR%20vs%20PI%20comparison%20for%20zeta%20converter%20in%20CCM.pdf Sarkawi, Hafez and Yoshito, Ohta (2016) Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode. In: Proceedings of the SICE Annual Conference 2016, 20-23 September 2016, Tsukuba, Japan. |
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A dc-dc zeta converter can be used to step-up or step-down input voltage. In order to stabilize the output voltage, a control subsystem needs to be deployed. This paper presents state-feedback controller for the dc-dc zeta converter using optimal control design technique. Performance comparison is made with proportional-integral (PI) controller. The system’s response subject to load perturbation is presented using PSIM® simulation tool. The proposed optimal control exhibits better control duty-cycle response thus better margin of stability compared to PI control. |
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Conference or Workshop Item |
author |
Sarkawi, Hafez Yoshito, Ohta |
spellingShingle |
Sarkawi, Hafez Yoshito, Ohta Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
author_facet |
Sarkawi, Hafez Yoshito, Ohta |
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Sarkawi, Hafez |
title |
Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
title_short |
Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
title_full |
Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
title_fullStr |
Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
title_full_unstemmed |
Optimal state-feedback and proportional-integral controller performance comparison for DC-DC Zeta converter operating in continuous conduction mode |
title_sort |
optimal state-feedback and proportional-integral controller performance comparison for dc-dc zeta converter operating in continuous conduction mode |
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2016 |
url |
http://eprints.utem.edu.my/id/eprint/25167/1/SICE2016%28Conference%29_Published%20-%20LQR%20vs%20PI%20comparison%20for%20zeta%20converter%20in%20CCM.pdf http://eprints.utem.edu.my/id/eprint/25167/ |
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