The paper presents novel strategy of synchronous control of five-phase inverters in the zone of overmodulation. New time-domain-based approach for analysis and synthesis of algorithms of synchronized pulsewidth modulation (PWM) allows providing smooth three-stage transition from a linear modulation region to the ten-step control mode of five-phase systems with space-vector modulation. Simulations give the behavior of five-phase inverters with synchronized PWM during overmodulation. The spectra of the phase-to-neutral voltage of five-phase power conversion systems with algorithms of synchronized PWM do not contain even harmonics and sub-harmonics in the zone of overmodulation, which is especially important for the high power/high current applications.
Overmodulation control of five-phase inverters with full DC-bus voltage utilization / Graditi, G.; Griva, Giovanni Battista; Oleschuk, V.. - STAMPA. - (2010), pp. 1150-1155. (Intervento presentato al convegno SPEEDAM 2010 tenutosi a Pisa, Italy nel 14-16 June 2010) [10.1109/SPEEDAM.2010.5542120].
Overmodulation control of five-phase inverters with full DC-bus voltage utilization
GRIVA, Giovanni Battista;
2010
Abstract
The paper presents novel strategy of synchronous control of five-phase inverters in the zone of overmodulation. New time-domain-based approach for analysis and synthesis of algorithms of synchronized pulsewidth modulation (PWM) allows providing smooth three-stage transition from a linear modulation region to the ten-step control mode of five-phase systems with space-vector modulation. Simulations give the behavior of five-phase inverters with synchronized PWM during overmodulation. The spectra of the phase-to-neutral voltage of five-phase power conversion systems with algorithms of synchronized PWM do not contain even harmonics and sub-harmonics in the zone of overmodulation, which is especially important for the high power/high current applications.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2371997
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