A computationally efficient implementation of a battery pack electrochemical model using waveform relaxation

Author:

Saccani GiacomoORCID,Ciaramella Gabriele,Raimondo Davide M.ORCID

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference76 articles.

1. Potential of lithium-ion batteries in renewable energy;Diouf;Renew. Energy,2015

2. R.C. Balch, A. Burke, A.A. Frank, The affect of battery pack technology and size choices on hybrid electric vehicle performance and fuel economy, in: Sixteenth Annual Battery Conference on Applications and Advances, Proceedings of the Conference (Cat. No.01TH8533), 2001, pp. 31–36.

3. Physico-Chemically Motivated Parameterization and Modelling of Real-Time Capable Lithium-Ion Battery Models: a Case Study on the Tesla Model S Battery;Hust,2019

4. A comparative study of equivalent circuit models for li-ion batteries;Hu;J. Power Sources,2012

5. Mathematical modeling of lithium-ion and nickel battery systems;Gomadam;J. Power Sources,2002

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