2021
DOI: 10.1016/j.matpr.2020.08.625
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Mitigation of common mode voltage in five phase multilevel inverter

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Cited by 5 publications
(2 citation statements)
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“…For threestage t-type neutral point clamped (NPC), three-phase inverters using SVPWM [27], and three level NPC five-phase inverters, simulation and experimental analysis have been presented to minimize the typical mode voltage using redundant switching state voltage vectors [28]. The NPC inverter and the cascaded inverter topology were discussed to reduce the bearing current and common-mode voltage in the five-phase multilevel inverter [29]. The complexity of the power circuit and the cost of multilevel converters increase as the output level increases.…”
Section: Multi-level Multiphase: a Reviewmentioning
confidence: 99%
“…For threestage t-type neutral point clamped (NPC), three-phase inverters using SVPWM [27], and three level NPC five-phase inverters, simulation and experimental analysis have been presented to minimize the typical mode voltage using redundant switching state voltage vectors [28]. The NPC inverter and the cascaded inverter topology were discussed to reduce the bearing current and common-mode voltage in the five-phase multilevel inverter [29]. The complexity of the power circuit and the cost of multilevel converters increase as the output level increases.…”
Section: Multi-level Multiphase: a Reviewmentioning
confidence: 99%
“…Simulation and experimental analysis using SVPWM have presented to minimize the typical mode voltage using redundant switching state voltage vectors for three-stage t-type neutral point clamped (NPC) three-phase inverters [27] and three-level NPC five-phase inverters [28]. In the five-phase multilevel inverter, the NPC inverter and the cascaded inverter topology were discussed to minimize bearing current and common-mode voltage [29].…”
Section: Svpwm In Multiphase Invertermentioning
confidence: 99%