In search of an equivalent circuit model for rechargeable batteries, many authors start with a measurement of battery impedance, spanning what is presumed to be the frequency range of interest. Various networks have been suggested in the literature to account for the measured impedance characteristic. Most incorporate two or more resistors, at least one capacitor, some include at least one Warburg element, and more recently “constant phase elements”(CPE), otherwise identified as fractional-derivative capacitors. Networks that are more successful at reproducing the measured impedance have from five up to tens of degrees of freedom. The frequency range upon which most models are based extends only to 1mHz. This is surprising since many batter...
This manuscript revisits the assertion of Berthier et al. that competing fractional-element equivale...
This paper shows two approaches to determine the battery impedance of battery cells or battery modul...
The impedance of a lithium battery at a single state-of-charge (SoC) is obtained from the current an...
In search of an equivalent circuit model for rechargeable batteries, many authors start with a measu...
Measurement of impedance of rechargeable batteries at very low frequencies reveals valuable informat...
There is a need for techniques for efficient and accurate measurement of the impedance of rechargeab...
The impedance of a battery can be modelled with an elegant fractional-capacitor or “constant phase e...
It is shown that RC circuits are inappropriate for modelling the transient runtime characteristics o...
To develop a compact battery model, many authors begin by measuring the impedance of a battery over ...
International audienceIn embedded applications which include power converters, the battery that prov...
Electrochemical Impedance Spectroscopy (EIS) is a well-established diagnostic technique for the char...
A recent paper by Wang et al proposes a state of charge-dependent polynomial equivalent circuit mode...
In order to measure the electrochemical characteristics of both electrodes inside Li-ion batteries, ...
This manuscript revisits the assertion of Berthier et al. that competing fractional-element equivale...
This paper shows two approaches to determine the battery impedance of battery cells or battery modul...
The impedance of a lithium battery at a single state-of-charge (SoC) is obtained from the current an...
In search of an equivalent circuit model for rechargeable batteries, many authors start with a measu...
Measurement of impedance of rechargeable batteries at very low frequencies reveals valuable informat...
There is a need for techniques for efficient and accurate measurement of the impedance of rechargeab...
The impedance of a battery can be modelled with an elegant fractional-capacitor or “constant phase e...
It is shown that RC circuits are inappropriate for modelling the transient runtime characteristics o...
To develop a compact battery model, many authors begin by measuring the impedance of a battery over ...
International audienceIn embedded applications which include power converters, the battery that prov...
Electrochemical Impedance Spectroscopy (EIS) is a well-established diagnostic technique for the char...
A recent paper by Wang et al proposes a state of charge-dependent polynomial equivalent circuit mode...
In order to measure the electrochemical characteristics of both electrodes inside Li-ion batteries, ...
This manuscript revisits the assertion of Berthier et al. that competing fractional-element equivale...
This paper shows two approaches to determine the battery impedance of battery cells or battery modul...
The impedance of a lithium battery at a single state-of-charge (SoC) is obtained from the current an...