IEEE Transactions on Power Electronics · 2012 · 54 citations · 3 references
Electrical EngineeringCoupled-inductor Buck-boost ConverterEngineeringPower Electronics ConverterCurrent Control StrategyElectric Power ConversionPower Electronic SystemsPower InverterPower ElectronicsControl Aim
An already published current control strategy for the coupled-inductor buck-boost converter is able to change its aim from controlling the input current to controlling the output current, and vice versa, depending on the instantaneous operation point and the applied current references. The main drawback of the two PI-based control implementation is its slow response when the control aim is changed from one current to the other. Due to the magnetic coupling, the converter's control-to-input and control-to-output current small signal transfer functions exhibit similar first-order characteristics. Therefore, it is possible to transform the previous control scheme to a PI-based one that exhibits faster and, in certain cases, much faster transitions between input and output current control operation. The presented experiments also show that the steady-state behavior of the converter is unaffected by the new control implementation.
3
Fuel cell power conditioning for electric power applications: a summary
Xiaoyan Yu, Michael Starke, Leon M. Tolbert et al. · IET Electric Power Applications · 2007 · 258 citations
Mathematical analysis of hybrid topologies efficiency for PEM fuel cell power systems design
Carlos Andrés Ramos‐Paja, Alfonso Romero, Roberto Giral et al. · International Journal of Electrical Power & Energy Systems · 2010 · 49 citations
Hybrid Topologies Efficiency, Electrical Engineering, Engineering +7