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The intention set for this book is to formulate a few topologies with enhanced voltage boost, while drawing continuous input current. To further reduce the device switching stress and improve the output waveform quality, a series of impedance-source NPC inverters based on transformer-capacitor impedance network inserted to the front-end of the NPC inverter bridge are proposed. These inverters integrate all advantages of the transformer-based impedance-source two-level inverters and classical NPC three-level switching. The proposed trans-Z-source NPC inverter has enhanced voltage boost…mehr

Produktbeschreibung
The intention set for this book is to formulate a few topologies with enhanced voltage boost, while drawing continuous input current. To further reduce the device switching stress and improve the output waveform quality, a series of impedance-source NPC inverters based on transformer-capacitor impedance network inserted to the front-end of the NPC inverter bridge are proposed. These inverters integrate all advantages of the transformer-based impedance-source two-level inverters and classical NPC three-level switching. The proposed trans-Z-source NPC inverter has enhanced voltage boost capability over the traditional Z-source NPC inverters. The component selection process, voltage/current stress and efficiency comparison between the proposed inverters and traditional impedance-source inverters will all be covered in the book. Simulation and experimental results will also be given for verifying the theoretical analyses presented.
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Autorenporträt
Mo received his bachelor and Ph.D degree from Electrical Engineering of Nanyang Technological University, Singapore in 2009, 2014 respectively. His research area includes DC/AC power conversion, renewable energy harvesting, smart grip implementation etc. Currently he is working as technical consultant engineer at Schneider Electric.