Parameter estimation of an electrochemical supercapacitor model

Parameter estimation of a supercapacitor model that uses PDEs to describe electrochemical physical phenomena is studied. The model parameters were identified from time domain charge/discharge data and also from frequency domain data in the form of electrical impedance spectroscopy at different open...

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Những tác giả chính: Drummond, R, Howey, D, Duncan, S
Định dạng: Conference item
Được phát hành: IEEE 2017
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author Drummond, R
Howey, D
Duncan, S
author_facet Drummond, R
Howey, D
Duncan, S
author_sort Drummond, R
collection OXFORD
description Parameter estimation of a supercapacitor model that uses PDEs to describe electrochemical physical phenomena is studied. The model parameters were identified from time domain charge/discharge data and also from frequency domain data in the form of electrical impedance spectroscopy at different open cell voltages. The identified physical model could fairly accurately simulate the experimental data, however, this accuracy was found to drop off at high frequencies. The performance of the physical model was compared to a second order circuit, with the two models having similar levels of accuracy. The circuit was found to be simpler to implement but, unlike the physical model, could not supply physical information about the internal state of the supercapacitor.
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spelling oxford-uuid:fda71e7b-643e-4327-9efe-e4c2d0e3c33f2022-03-27T13:30:26ZParameter estimation of an electrochemical supercapacitor modelConference itemhttp://purl.org/coar/resource_type/c_5794uuid:fda71e7b-643e-4327-9efe-e4c2d0e3c33fSymplectic Elements at OxfordIEEE2017Drummond, RHowey, DDuncan, SParameter estimation of a supercapacitor model that uses PDEs to describe electrochemical physical phenomena is studied. The model parameters were identified from time domain charge/discharge data and also from frequency domain data in the form of electrical impedance spectroscopy at different open cell voltages. The identified physical model could fairly accurately simulate the experimental data, however, this accuracy was found to drop off at high frequencies. The performance of the physical model was compared to a second order circuit, with the two models having similar levels of accuracy. The circuit was found to be simpler to implement but, unlike the physical model, could not supply physical information about the internal state of the supercapacitor.
spellingShingle Drummond, R
Howey, D
Duncan, S
Parameter estimation of an electrochemical supercapacitor model
title Parameter estimation of an electrochemical supercapacitor model
title_full Parameter estimation of an electrochemical supercapacitor model
title_fullStr Parameter estimation of an electrochemical supercapacitor model
title_full_unstemmed Parameter estimation of an electrochemical supercapacitor model
title_short Parameter estimation of an electrochemical supercapacitor model
title_sort parameter estimation of an electrochemical supercapacitor model
work_keys_str_mv AT drummondr parameterestimationofanelectrochemicalsupercapacitormodel
AT howeyd parameterestimationofanelectrochemicalsupercapacitormodel
AT duncans parameterestimationofanelectrochemicalsupercapacitormodel