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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.
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.