2013 Twenty-Eighth Annual IEEE Applied Power Electronics Conference and Exposition (APEC) 2013
DOI: 10.1109/apec.2013.6520689
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The Jiles Atherton model for description of hysteresis in lithium battery

Abstract: In this paper Jiles Atherton (JA) Model is used to obtain a mathematical model of the hysteresis in lithium battery. JA Model allows to describe both the hysteresis and the dynamical features of charging and discharging cycles in a lithium battery. The identification of the model is obtained by using a neural network technique developed for magnetic systems. The model is validated on some experimental tests on commercial batteries. I.

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Cited by 37 publications
(21 citation statements)
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“…Even with the strong competition from the rival Li-ion battery [4][5][6][7], Ni/MH still finds its niche market in replacing nickel-cadmium (NiCd) and primary batteries [8][9][10]. China has been the country that has produced the most (>70%) of the consumer-type Ni/MH batteries for the world since the turn of the century.…”
Section: Introductionmentioning
confidence: 99%
“…Even with the strong competition from the rival Li-ion battery [4][5][6][7], Ni/MH still finds its niche market in replacing nickel-cadmium (NiCd) and primary batteries [8][9][10]. China has been the country that has produced the most (>70%) of the consumer-type Ni/MH batteries for the world since the turn of the century.…”
Section: Introductionmentioning
confidence: 99%
“…The lower line (grey clear) corresponding to AQSI=0.5, represents the limit within which is present the comfort. [16][17]. The black line, corresponding to AQSI=2 indicates the limit of heavy stress.…”
Section: Advances In Environmental Technologiesmentioning
confidence: 99%
“…Cole-Cole plots obtained from the alternating current (AC) impedance measurements are shown in Figure 6. The reported equivalent circuit model for Ni-MH batteries using Mg-based alloy anodes is shown in Figure 7 [63][64][65][66][67]. Constant phase elements are used in this circuit model, due to the inhomogeneity properties of the electrode surface, such as porosity and roughness.…”
Section: Effects Of Cs 2 Co 3 Addition On Mgni Alloymentioning
confidence: 99%