Abstract
The modeling of Lithium ion battery involves a large and complex multi scale system measuring from the microscopic system (electrode particles) to that of the macroscopic system (the length of the cell). Furthermore, the time derivative o f diffusion-advection model o f charge transport is coupled with an ordinary differential equation (ODE) of potential equation. Therefore, solution to such model requires an efficient and a versatile method namely Method of lines technique (MOL). The MOL is a numerical technique that converts the PDEs into a set of ODEs in the time variable through discretisation process of spatial derivatives using finite difference scheme. The ODEs are then being solved using a built-in ODE solver. The potential discharge curve is compared to an experimental data of half-cell LiFEP04 cathode. It is shown that the technique provides high accuracy solution to the system, numerical stability and computational efficiency.
Metadata
Item Type: | Book Section |
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Creators: | Creators Email / ID Num. Ranom, Rahifa UNSPECIFIED Yusof, Norzihani UNSPECIFIED Abd Rahim, Noorafiqah UNSPECIFIED Ahmad Jamal, Saidatul Nur Aisyahtun Sakinah UNSPECIFIED |
Contributors: | Contribution Name Email / ID Num. Patron Mahat, Sabariah UNSPECIFIED Advisor Othman, Rani Diana UNSPECIFIED Advisor Harun, Norazman UNSPECIFIED Advisor Ismail, Shafinar UNSPECIFIED |
Subjects: | T Technology > TJ Mechanical engineering and machinery > Mechanical devices and figures. Automata. Ingenious mechanisms.Robots (General) |
Divisions: | Universiti Teknologi MARA, Melaka > Bahagian Penyelidikan dan Jaringan Industri, UiTM Melaka |
Keywords: | Lithium ion battery; Multi scale system; Lines technique |
Date: | 2017 |
URI: | https://ir.uitm.edu.my/id/eprint/47834 |