Title :
Sliding-mode-control-based DC/DC converters design and implementation for hybrid proton exchange membrane fuel cell/battery power system
Author :
Ya-Xiong Wang ; Fei-Fei Qin ; Kai Ou ; Young-Bae Kim
Author_Institution :
Dept. of Mech. Eng., Chonnam Nat. Univ., Gwangju, South Korea
Abstract :
DC/DC converters with hybrid proton exchange membrane (PEM) fuel cell and battery power sources are designed and implemented using sliding mode control (SMC). The converters are typically comprised by unidirectional boost converter and bidirectional converter which are used for regulating the bus voltage and managing power distribution. SMC is selected to control the converters since it can cope with the high non-linear characteristic of the coupled system as well as ensure the stability. The hybrid power control system is constructed in MATLAB/Simulink platform. A comparative approach based on conventional proportional-integral (PI) control is developed to compare the control performance with SMC. The experimental validation is carried out with National Instruments (NI) LabVIEW-based hybrid PEMFC/battery supplied DC/DC converters system prototype.
Keywords :
DC-DC power convertors; battery storage plants; hybrid power systems; power control; power system control; proton exchange membrane fuel cells; variable structure systems; DC-DC converters; PI control; bidirectional converter; bus voltage regulation; hybrid PEM fuel cell battery power system; hybrid power control system; hybrid proton exchange membrane fuel cell; power distribution management; proportional-integral control; sliding-mode control; unidirectional boost converter; Batteries; Fuel cells; Hybrid power systems; Mathematical model; Pi control; System-on-chip; Voltage control; Hybrid PEM fuel cell/battery power system; bidirectional converter; sliding mode control (SMC); unidirectional boost converter;
Conference_Titel :
Power Electronics and ECCE Asia (ICPE-ECCE Asia), 2015 9th International Conference on
Conference_Location :
Seoul
DOI :
10.1109/ICPE.2015.7168075