2007
DOI: 10.1149/1.2811697
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Modeling of Direct Methanol Fuel Cell Using a Resistive-Capacitive-Inductive Transmission-Line Equivalent Circuit

Abstract: A novel resistive-capacitive-inductive transmission-line equivalent circuit was used to model direct methanol fuel cell (DMFC). This fuel cell model inherited and improved existing impedance fuel cell model and transmission-line fuel cell model in many aspects. The transmission line model can properly describe the inductive and capacitive behaviors of DMFC operating in both low and high frequency regions. The advantages of this transmission line fuel cell model have been discussed based on well-known experimen… Show more

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“…The micro-homogeneous structure has not been considered in the discrete equivalent electric circuit model. Recently, a transmission line fuel cell model has been established for DMFC (17). Based on this model, the impedance spectrum broadening, a deviation comparing with that of our discrete equivalent electric circuit model, in low frequency (< 100 Hz) has been found when the DMFC operating under large cell current condition.…”
Section: Ecs Transactions 12 (1) 221-237 (2008)mentioning
confidence: 91%
“…The micro-homogeneous structure has not been considered in the discrete equivalent electric circuit model. Recently, a transmission line fuel cell model has been established for DMFC (17). Based on this model, the impedance spectrum broadening, a deviation comparing with that of our discrete equivalent electric circuit model, in low frequency (< 100 Hz) has been found when the DMFC operating under large cell current condition.…”
Section: Ecs Transactions 12 (1) 221-237 (2008)mentioning
confidence: 91%