Title :
Single-Stage and Boost-Voltage Grid-Connected Inverter for Fuel-Cell Generation System
Author :
Jiarong Kan ; Shaojun Xie ; Yunya Wu ; Yu Tang ; Zhilei Yao ; Rong Chen
Author_Institution :
Coll. of Electr. Eng., Yancheng Inst. of Technol., Yancheng, China
Abstract :
According to the requirement of fuel cell generation system, this paper presents a new single-stage and boost-voltage grid-connected inverter, as well as the signal modulation diagram in a line cycle. In the proposed inverter, one of the bridge legs is shared with a boost converter. The boost inductor current is designed in discontinuous conduction mode, which can effectively decrease low-frequency current ripple (LFCR) in the output current of the fuel cell. The switching modes of the proposed inverter are analyzed in positive and negative half line cycles, respectively. The LFCR in the output current of the fuel cell is analyzed, from which the design principle of the boost voltage inductor is obtained. The per-unit current values of the shared switches and the loss of the whole system are derived and compared with those of the conventional inverter. Experimental verifications are presented to verify the theoretical analysis.
Keywords :
bridge circuits; fuel cells; inductors; invertors; power grids; LFCR; boost converter; boost voltage inductor current design; boost-voltage grid-connected inverter; bridge legs; discontinuous conduction mode; fuel cell generation system; line cycle; low-frequency current ripple; negative half-line cycle; positive half-line cycle; signal modulation diagram; single-stage grid-connected inverter; Active filters; Capacitors; Fuel cells; Inductors; Inverters; Switches; Topology; Boost voltage; Fuel cell; boost voltage; fuel cell; grid-Connected inverter; grid-connected inverter; low-frequency current ripple (LFCR); single-stage;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2015.2416339