Title :
SRF based modeling and control of cascaded multilevel active rectifier with uniform DC-buses
Author :
Kumar, Ajit ; Kumar, Dinesh ; Meena, Daya Ram
Author_Institution :
Dept. of Electr. Eng., Delhi Technol. Univ., New Delhi, India
Abstract :
Cascaded H-bridge (CHB) multilevel active rectifier system envisage attractive alternative for conventional method of active rectification and finds application in traction drive and locomotives. Further CHB structure can be utilize of high voltage transformer less rectification. Availability of multiple DC buses in CHB, needs DC bus regulation at each level. It becomes a challenging task in CHB due to interdependent control of each H-bridge. It is therefore proper control algorithm has to be designed for effective regulation and fast response. In view of this single phase synchronous reference frame (SRF) theory based voltage controlled phase shifted PWM controller has been modeled for active rectification with unity power factor operation. MATLAB based simulation results shows the efficient working of CHB multilevel active rectifier with proposed control algorithms and its effectiveness is verified by changing the loading conditions.
Keywords :
PWM rectifiers; cascade systems; phase control; potential transformers; power factor; voltage control; CHB rectifier system; MATLAB based simulation; SRF based modeling; cascaded H-bridge multilevel active rectifier system; dc bus regulation; high voltage transformer; interdependent control; loading conditions; locomotives; single phase synchronous reference frame theory; traction drive; uniform dc-buses; unity power factor operation; voltage controlled phase shifted PWM controller; Bridge circuits; Load modeling; MATLAB; Pulse width modulation; Reactive power; Rectifiers; Voltage control; Cascaded H-bridge (CHB); Multilevel; Phase shifted PWM; Synchronous reference frame (SRF);
Conference_Titel :
Engineering and Computational Sciences (RAECS), 2014 Recent Advances in
Conference_Location :
Chandigarh
Print_ISBN :
978-1-4799-2290-1
DOI :
10.1109/RAECS.2014.6799564