Presentation 2013-01-24
A study on an equivalent circuit model of Mn-system lithium-ion battery module for cyclic charge and discharge energy efficiency evaluation
Takaaki OISHI, Hideharu SUGIHARA, Tsuyoshi FUNAKI,
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Abstract(in English) An accurate model in electrical behaviors of lithium-ion battery is necessary to design the optimal installation capacity and to operate the output power regulation system for PV and wind-power generation more efficiently. This paper attempts to model the frequency characteristics of internal impedance for Mn-system lithium-ion battery module with equivalent circuit, which is identified from the measured impedance with small amplitude sinusoidal current. This paper also validates the applicability of the equivalent circuit model to evaluate the charge and discharge energy efficiency in cyclic operation with large amplitude sinusoidal current.
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Keyword(in English) Lithium-ion secondary battery / frequency characteristics / equivalent circuit / modeling / cyclic charge and discharge
Paper # EE2012-39,CPM2012-161
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Committee EE
Conference Date 2013/1/17(1days)
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Registration To Energy Engineering in Electronics and Communications (EE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A study on an equivalent circuit model of Mn-system lithium-ion battery module for cyclic charge and discharge energy efficiency evaluation
Sub Title (in English)
Keyword(1) Lithium-ion secondary battery
Keyword(2) frequency characteristics
Keyword(3) equivalent circuit
Keyword(4) modeling
Keyword(5) cyclic charge and discharge
1st Author's Name Takaaki OISHI
1st Author's Affiliation Osaka University, Division of Electrical, Electronic and Information Engineering()
2nd Author's Name Hideharu SUGIHARA
2nd Author's Affiliation Osaka University, Division of Electrical, Electronic and Information Engineering
3rd Author's Name Tsuyoshi FUNAKI
3rd Author's Affiliation Osaka University, Division of Electrical, Electronic and Information Engineering
Date 2013-01-24
Paper # EE2012-39,CPM2012-161
Volume (vol) vol.112
Number (no) 396
Page pp.pp.-
#Pages 6
Date of Issue