Nonlinear-model predictive control based bidirectional converter for V2G battery charger applications

Citations

SCOPUS

8

초록

This paper presents a new bidirectional Buck and Boost converter with nonlinear-model predictive controller (NMPC) for vehicle-to-grid (V2G) battery charger applications. The proposed converter consists of bidirectional modes; Buck mode for charging the battery, and Boost mode for discharging to the grid from the battery. The converter is designed with two separated inductors to make the current control easier and inductor design more flexible. The new current controller is also developed using closed-form nonlinear predictive control. With analytical modeling and control, the proposed converter achieved over the wide input voltage and load current range. In additions, the converter showed better and more accurate performance in both steady state and transient state than linear control methods. Simulation demonstrates the effectiveness of the proposed NMPC to a 2kW DC-DC converter.

키워드

Bidirectional ConverterNonlinear Model Predictive Control (NMPC)Vehicle-to-Grid (V2G) ChargerAccurate performanceAnalytical modelingBattery chargersBidirectional convertersBidirectional modeBoost modeBuck modeBuck-and-boost converterClosed formCurrent controllerInductor designInput voltagesLinear controlsLoad currentsNon-linear modelNonlinear model predictive controlNonlinear predictive controlPredictive controlPredictive controllerSteady stateTransient stateVehicle to gridsVehicle-to-Grid (V2G) ChargerCharging (batteries)ControllersDC power transmissionDC-DC convertersElectric convertersElectric current controlElectric inductorsLinear control systemsPredictive control systemsPropulsionVehiclesModel predictive control
제목
Nonlinear-model predictive control based bidirectional converter for V2G battery charger applications
저자
Abedi, MohammadrezaSong, Byeong-MunKim, Rae-Young
DOI
10.1109/VPPC.2011.6043204
발행일
2011-10
유형
Conference Paper
저널명
2011 IEEE Vehicle Power and Propulsion Conference, VPPC 2011
페이지
1 ~ 6