A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter

This paper presents a comparison of voltage mode control (VMC) and two current mode control (CMC) methods of noninverting buck-boost converter. The converter control-to-output transfer function, line-to-output transfer function and the output impedance are obtained for all methods by averaging conve...

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Main Author: M. Č. Bošković
Format: Article
Language:English
Published: Telecommunications Society, Academic Mind 2016-06-01
Series:Telfor Journal
Subjects:
Online Access: http://journal.telfor.rs/Published/Vol8No1/Vol8No1_A11.pdf
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author M. Č. Bošković
author_facet M. Č. Bošković
author_sort M. Č. Bošković
collection DOAJ
description This paper presents a comparison of voltage mode control (VMC) and two current mode control (CMC) methods of noninverting buck-boost converter. The converter control-to-output transfer function, line-to-output transfer function and the output impedance are obtained for all methods by averaging converter equations over one switching period and applying small-signal linearization. The obtained results are required for the design procedure of feedback compensator to keep a system stable and robust. A comparative study of VMC, peak current mode control (PCMC) and dual-current mode control (DCMC) is performed. Performance evaluation of the closed-loop system with obtained compensator between these methods is performed via numerical simulations.
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spelling doaj.art-ef1a7f40fc604859ab6e312d6b46871a2022-12-22T01:55:50ZengTelecommunications Society, Academic MindTelfor Journal1821-32512016-06-0181626710.5937/telfor1601062BA Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost ConverterM. Č. BoškovićThis paper presents a comparison of voltage mode control (VMC) and two current mode control (CMC) methods of noninverting buck-boost converter. The converter control-to-output transfer function, line-to-output transfer function and the output impedance are obtained for all methods by averaging converter equations over one switching period and applying small-signal linearization. The obtained results are required for the design procedure of feedback compensator to keep a system stable and robust. A comparative study of VMC, peak current mode control (PCMC) and dual-current mode control (DCMC) is performed. Performance evaluation of the closed-loop system with obtained compensator between these methods is performed via numerical simulations. http://journal.telfor.rs/Published/Vol8No1/Vol8No1_A11.pdf Noninverting buck-boost converterVoltage mode controlCurrent mode controlPerformance
spellingShingle M. Č. Bošković
A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
Telfor Journal
Noninverting buck-boost converter
Voltage mode control
Current mode control
Performance
title A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
title_full A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
title_fullStr A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
title_full_unstemmed A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
title_short A Comparative Study of Voltage, Peak Current and Dual Current Mode Control Methods for Noninverting Buck-Boost Converter
title_sort comparative study of voltage peak current and dual current mode control methods for noninverting buck boost converter
topic Noninverting buck-boost converter
Voltage mode control
Current mode control
Performance
url http://journal.telfor.rs/Published/Vol8No1/Vol8No1_A11.pdf
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