Title :
Novel individual voltage balancing control scheme for multilevel cascade active-front-end rectifier
Author :
Chuang Liu ; Fangyi Zhao ; Guowei Cai ; Nantian Huang ; Jianze Wang ; Mingyan Wang
Author_Institution :
Sch. of Electr. Eng., Northeast Dianli Univ., Jilin, China
Abstract :
In this study, a novel individual voltage balancing control scheme for multilevel cascade active-front-end rectifier is proposed to allow a different voltage setting capability among different dc outputs in series. First, the proportional resonant controller and admittance compensation controller are introduced for the active inner-current control loop of cascade active-front-end rectifier to achieve better steady-state and dynamic performance. Second, an assumption based on conservation of energy is proposed to decouple a series connected ac-dc system into several individual subsystems to facilitate the individual dc-bus controller design. Both simulation and experimental results based on the cascade two-unit cascade dual-buck/boost-type active-front-end rectifier proved the effectiveness of the proposed individual balancing control scheme, which also verified the proposed assumption.
Keywords :
AC-DC power convertors; cascade control; compensation; control system synthesis; electric admittance; electric current control; energy conservation; proportional control; rectifiers; resonant power convertors; voltage control; DC bus controller design; active inner current control loop; admittance compensation controller; cascade dual buck-boost rectifier; dynamic performance; energy conservation; multilevel cascade active front end rectifier; proportional resonant controller; series connected AC-DC system decoupling; steady-state performance; voltage balancing control scheme;
Journal_Title :
Power Electronics, IET
DOI :
10.1049/iet-pel.2012.0257