SVPWM control strategy for a three phase five level dual inverter fed open-end winding induction motor

A Space Vector Pulse Width Modulation (SVPWM) control strategy is proposed for a three phase five level dual inverter fed open-end winding induction motor. This system includes 2 three level Neutral Point Clamped (NPC) inverters, which is supplied by two isolated dc power supplies. The conventional...

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Veröffentlicht in:ISA transactions 2020-07, Vol.102, p.105-116
Hauptverfasser: Ramasamy, Palanisamy, Krishnasamy, Vijayakumar
Format: Artikel
Sprache:eng
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Zusammenfassung:A Space Vector Pulse Width Modulation (SVPWM) control strategy is proposed for a three phase five level dual inverter fed open-end winding induction motor. This system includes 2 three level Neutral Point Clamped (NPC) inverters, which is supplied by two isolated dc power supplies. The conventional SVPWM has more complexity in reference vector identification and switching time calculation. The reference vector for proposed five level SVPWM scheme is tracked using three level voltage vector and offset voltage, where 5-level hexagonal region is divided into seven 3-level hexagonal regions. The proposed SVPWM leads to reduce the complexity in switching time calculation, Total Harmonic Distortion (THD) reduction, Minimization of Common Mode Voltage (CMV) and low voltage stresses across the switching devices. Also this system estimate the phase current of the five level dual inverter fed open-end winding induction motor. The results obtained using simulation and hardware are compared and verified using Digital Signal Processor. [Display omitted] •Common Mode Voltage of 5-level dual NPC inverter is minimized to 24.5 V, which is Vdc/12 times of input voltage.•THD is reduced to 0.21% for output voltage and 2.75% for output current of 5-level dual NPC inverter.•Three phase five level output is generated using 2 three level NPC inverter with open-end winding induction motor using SVPWM scheme.•This system reduces the complexity in switching time calculation and reference vector identification.
ISSN:0019-0578
1879-2022
DOI:10.1016/j.isatra.2020.02.034