Advanced DC-DC Power Converters and Switching Converters

Nowadays, power electronics is an enabling technology in the energy development scenario. Furthermore, power electronics is strictly linked with several fields of technological growth, such as consumer electronics, IT and communications, electrical networks, utilities, industrial drives and robotics...

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Bibliographic Details
Other Authors: Musumeci, Salvatore (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
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DOAB: description of the publication
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520 |a Nowadays, power electronics is an enabling technology in the energy development scenario. Furthermore, power electronics is strictly linked with several fields of technological growth, such as consumer electronics, IT and communications, electrical networks, utilities, industrial drives and robotics, and transportation and automotive sectors. Moreover, the widespread use of power electronics enables cost savings and minimization of losses in several technology applications required for sustainable economic growth. The topologies of DC-DC power converters and switching converters are under continuous development and deserve special attention to highlight the advantages and disadvantages for use increasingly oriented towards green and sustainable development. DC-DC converter topologies are developed in consideration of higher efficiency, reliable control switching strategies, and fault-tolerant configurations. Several types of switching converter topologies are involved in isolated DC-DC converter and nonisolated DC-DC converter solutions operating in hard-switching and soft-switching conditions. Switching converters have applications in a broad range of areas in both low and high power densities. The articles presented in the Special Issue titled "Advanced DC-DC Power Converters and Switching Converters" consolidate the work on the investigation of the switching converter topology considering the technological advances offered by innovative wide-bandgap devices and performance optimization methods in control strategies used. 
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546 |a English 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a interleaved operation 
653 |a three-winding coupled inductor 
653 |a high step-up DC-DC converter 
653 |a DC/DC converter 
653 |a multi-input-port 
653 |a bidirectional 
653 |a energy storage 
653 |a three-phase bidirectional isolated DC-DC converter 
653 |a burst-mode switching 
653 |a high-frequency transformer configurations 
653 |a phase-shift modulation 
653 |a intermittent switching 
653 |a three-phase dual-active bridge 
653 |a bidirectional converter 
653 |a high efficiency 
653 |a GaN 
653 |a SiC 
653 |a buck-boost converter 
653 |a high switching frequency 
653 |a electric vehicle (EV) 
653 |a fast charging 
653 |a interleaved dc-dc converter 
653 |a SiC devices 
653 |a Si devices 
653 |a Component Connection Method 
653 |a power electronics-based systems 
653 |a stability analysis 
653 |a state-space methods 
653 |a virtual synchronous generators 
653 |a DC-DC converters 
653 |a photovoltaics 
653 |a single-diode model 
653 |a state-space 
653 |a multi-port dual-active bridge (DAB) converter 
653 |a wide-band-gap (WBG) semiconductors 
653 |a silicon carbide (SiC) MOSFETs 
653 |a power converter 
653 |a automotive 
653 |a battery charger 
653 |a circuit modelling 
653 |a power electronics 
653 |a SiC MOSFET 
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