TY - JOUR
T1 - Study of method for designing the power and the capacitance of fuel cells and electric double-layer capacitors of hybrid railway vehicle
AU - Takizawa, Kenji
AU - Kondo, Keiichiro
PY - 2012
Y1 - 2012
N2 - A hybrid railway traction system with fuel cells (FCs) and electric double layer-capacitors (EDLCs) is discussed in this paper. This system can save FC costs and absorb the regenerative energy. A method for designing FCs and EDLCs on the basis of the output power and capacitance, respectively, has not been reported, even though their design is one of the most important technical issues encountered in the design of hybrid railway vehicles. Such design method is presented along with a train load profile and an energy management strategy. The design results obtained using the proposed method are verified by performing numerical simulations of a running train. These results reveal that the proposed method for designing the EDLCs and FCs on the basis of the capacitance and power, respectively, and by using a method for controlling the EDLC voltage is sufficiently effective in designing efficient EDLCs and FCs of hybrid railway traction systems.
AB - A hybrid railway traction system with fuel cells (FCs) and electric double layer-capacitors (EDLCs) is discussed in this paper. This system can save FC costs and absorb the regenerative energy. A method for designing FCs and EDLCs on the basis of the output power and capacitance, respectively, has not been reported, even though their design is one of the most important technical issues encountered in the design of hybrid railway vehicles. Such design method is presented along with a train load profile and an energy management strategy. The design results obtained using the proposed method are verified by performing numerical simulations of a running train. These results reveal that the proposed method for designing the EDLCs and FCs on the basis of the capacitance and power, respectively, and by using a method for controlling the EDLC voltage is sufficiently effective in designing efficient EDLCs and FCs of hybrid railway traction systems.
KW - Control method
KW - Electric double layer capacitor (EDLC)
KW - Energy management
KW - Energy storage device
KW - Fuel cell
KW - Hybrid powered railway vehicle
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U2 - 10.1541/ieejias.132.133
DO - 10.1541/ieejias.132.133
M3 - Article
AN - SCOPUS:84856761861
SN - 0913-6339
VL - 132
SP - 133
EP - 139
JO - ieej transactions on industry applications
JF - ieej transactions on industry applications
IS - 2
ER -