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Step-Up DC–DC Converters: A Comprehensive Review of Voltage-Boosting Techniques, Topologies, and Applications

IEEE Transactions on Power Electronics · 2017 · Vol. 32(12) · pp. 9143–9178
Mojtaba ForouzeshYam P. SiwakotiSaman A. GorjiFrede BlaabjergBrad Lehman

Abstract

DC-DC converters with voltage boost capability are widely used in a large number of power conversion applications, from fraction-of-volt to tens of thousands of volts at power levels from milliwatts to megawatts. The literature has reported on various voltage-boosting techniques, in which fundamental energy storing elements (inductors and capacitors) and/or transformers in conjunction with switch(es) and diode(s) are utilized in the circuit. These techniques include switched capacitor (charge pump), voltage multiplier, switched inductor/voltage lift, magnetic coupling, and multistage/-level, and each has its own merits and demerits depending on application, in terms of cost, complexity, power density, reliability, and efficiency. To meet the growing demand for such applications, new power converter topologies that use the above voltage-boosting techniques, as well as some active and passive components, are continuously being proposed. The permutations and combinations of the various voltage-boosting techniques with additional components in a circuit allow for numerous new topologies and configurations, which are often confusing and difficult to follow. Therefore, to present a clear picture on the general law and framework of the development of next-generation step-up dc-dc converters, this paper aims to comprehensively review and classify various step-up dc-dc converters based on their characteristics and voltage-boosting techniques. In addition, the advantages and disadvantages of these voltage-boosting techniques and associated converters are discussed in detail. Finally, broad applications of dc-dc converters are presented and summarized with comparative study of different voltage-boosting techniques.

Advanced DC-DC ConvertersAdvancements in Battery MaterialsAdvanced Battery Technologies ResearchConvertersVoltage multiplierBoosting (machine learning)Electronic engineeringInductorVoltageCapacitorElectrical engineeringTransformerComputer science
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References
Impedance-Source Networks for Electric Power Conversion Part I: A Topological Review
IEEE Transactions on Power Electronics · 2014 · 695 citations
High-efficiency, high step-up DC-DC converters
IEEE Transactions on Power Electronics · 2003 · 1,008 citations
Analysis and Optimization of Switched-Capacitor DC–DC Converters
IEEE Transactions on Power Electronics · 2008 · 1,011 citations
A New ZVS Bidirectional DC–DC Converter for Fuel Cell and Battery Application
IEEE Transactions on Power Electronics · 2004 · 777 citations
Recent Advances and Industrial Applications of Multilevel Converters
IEEE Transactions on Industrial Electronics · 2010 · 3,795 citations
Voltage Multiplier Cells Applied to Non-Isolated DC–DC Converters
IEEE Transactions on Power Electronics · 2008 · 745 citations
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Step-Up DC–DC Converters: A Comprehensive Review of Voltage-Boosting Techniques, Topologies, and Applications · Scinovex