The problem of nondestructive determination of the state-of-charge of nickel-cadmium batteries has been examined experimentally as well as theoretically from the viewpoint of internal impedance. It is shown that the modulus of the impedance is mainly controlled by diffusion at all states of charge. Even so, a prediction of the state of charge is possible if the equivalent series/parallel capacitance or the alternating current phase shift is measured at a sufficiently low a.c. test frequency (5–30 Hz) which also avoids inductive effects. These results are explained on the basis of a uniform transmission-line analog equivalent circuit for the battery electrodes
We investigate impedance spectra obtained from an electrochemical model using pulsed signals. We cha...
Impedance concepts can be applied to the analysis of battery electrodes, yielding information about ...
A 7.2V, 1.25 Ah sealed lithium-ion rechargeable battery has been studied for estimating its state-of...
The determination of the state-of-charge of the lead-acid battery has been examined from the viewpoi...
A non-destructive estimation of the state-of-charge (SoC) of batteries facilitates optimum utilizati...
A non-destructive estimation of the state-of-charge (SoC) of batteries facilitates optimum utilizati...
The problem of non-destructive determination of the state-of-charge of zinc- and magnesium-manganese...
The impedance of sealed nickel/cadmium cells is measured at low states-of-charge that correspond to ...
A new robust method for the nondestructive determination of impedance parameters of the individual e...
The thesis describes an electrochemical investigation of different types of nickel electrode used in...
Introduces an applicable method for measuring battery's internal impedance and conductance technique...
Advanced electrochemical impedance spectroscopy (EIS) was applied to characterize industrial Ni-Cd b...
From abstract: "A rapid simple method has been developed for determining state of charge of the wide...
The State of Health (SOH) of a battery is important to know the maximum energy that a battery can r...
We present a fast, low-cost approach to measure battery impedance ‘on-line ’ in a vehicle across a r...
We investigate impedance spectra obtained from an electrochemical model using pulsed signals. We cha...
Impedance concepts can be applied to the analysis of battery electrodes, yielding information about ...
A 7.2V, 1.25 Ah sealed lithium-ion rechargeable battery has been studied for estimating its state-of...
The determination of the state-of-charge of the lead-acid battery has been examined from the viewpoi...
A non-destructive estimation of the state-of-charge (SoC) of batteries facilitates optimum utilizati...
A non-destructive estimation of the state-of-charge (SoC) of batteries facilitates optimum utilizati...
The problem of non-destructive determination of the state-of-charge of zinc- and magnesium-manganese...
The impedance of sealed nickel/cadmium cells is measured at low states-of-charge that correspond to ...
A new robust method for the nondestructive determination of impedance parameters of the individual e...
The thesis describes an electrochemical investigation of different types of nickel electrode used in...
Introduces an applicable method for measuring battery's internal impedance and conductance technique...
Advanced electrochemical impedance spectroscopy (EIS) was applied to characterize industrial Ni-Cd b...
From abstract: "A rapid simple method has been developed for determining state of charge of the wide...
The State of Health (SOH) of a battery is important to know the maximum energy that a battery can r...
We present a fast, low-cost approach to measure battery impedance ‘on-line ’ in a vehicle across a r...
We investigate impedance spectra obtained from an electrochemical model using pulsed signals. We cha...
Impedance concepts can be applied to the analysis of battery electrodes, yielding information about ...
A 7.2V, 1.25 Ah sealed lithium-ion rechargeable battery has been studied for estimating its state-of...