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Simulation study of electrical dynamic characteristics of lithium-ion battery
Authors:Kiyonami Takano   Ken Nozaki   Yoshiyasu Saito   Akira Negishi   Ken Kato  Yoshio Yamaguchi
Affiliation:

a Electrotechnical Laboratory, Energy Technology Division, Umezono 1-1-4 Tsukuba, Ibaraki 305-8568, Japan

b Chiba Institute of Technology, Narashino, Chiba 275-0016, Japan

Abstract:The electrical dynamic characteristics of a lithium-ion battery have been simulated by an equivalent circuit, which is derived from the measured impedance. The transient voltage response to the various kinds of applied current waves such as single pulse, single rectangular, triangle, and sawtooth waves is experimentally examined and calculated by using the numerical Laplace transform with the equivalent circuit. The experimental and calculated results are compared and discussed, focusing on the range of current where the linear relationship is valid. Changing the time range, the state of charge (SOC) and the battery temperature as parameters, their influence on the linear range of the applied current has been investigated.
Keywords:Lithium-ion battery   Electrical characteristics   Equivalent circuit   Battery impedance   Nonlinear relationship   Laplace transform
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