Detail publikačního výsledku

Physical and Reduced Modeling of Liion Battery Thermal Abuse

VYROUBAL, P.; KAZDA, T.; SEDLAŘÍK, M.

Originální název

Physical and Reduced Modeling of Liion Battery Thermal Abuse

Anglický název

Physical and Reduced Modeling of Liion Battery Thermal Abuse

Druh

Stať ve sborníku mimo WoS a Scopus

Originální abstrakt

Thermal abuse in lithium-ion (Li-ion) batteries poses significant risks to safety and reliability in applications ranging from consumer electronics to electric vehicles. This paper presents a brief overview of the physical mechanisms involved in thermal abuse, explores detailed physical modeling approaches, and introduces reduced-order modeling (ROM) techniques that enable faster simulations with acceptable accuracy. A comparison is drawn through a practical example. Applications of such models in battery pack design and safety diagnostics are discussed.

Anglický abstrakt

Thermal abuse in lithium-ion (Li-ion) batteries poses significant risks to safety and reliability in applications ranging from consumer electronics to electric vehicles. This paper presents a brief overview of the physical mechanisms involved in thermal abuse, explores detailed physical modeling approaches, and introduces reduced-order modeling (ROM) techniques that enable faster simulations with acceptable accuracy. A comparison is drawn through a practical example. Applications of such models in battery pack design and safety diagnostics are discussed.

Klíčová slova

Thermal Abuse, Battery, Model, Reduce Order Model

Klíčová slova v angličtině

Thermal Abuse, Battery, Model, Reduce Order Model

Autoři

VYROUBAL, P.; KAZDA, T.; SEDLAŘÍK, M.

Vydáno

19.06.2025

Nakladatel

Česká elektrotechnická společnost, ÚOS chemické zdroje elektrické energie

Místo

Hatě

ISBN

978-80-02-03089-8

Strany od

64

Strany do

66

Strany počet

3

URL

BibTex

@inproceedings{BUT199273,
  author="Petr {Vyroubal} and Tomáš {Kazda} and Marek {Sedlařík}",
  title="Physical and Reduced Modeling of Liion Battery 
Thermal Abuse",
  year="2025",
  pages="64--66",
  publisher="Česká elektrotechnická společnost, ÚOS chemické zdroje  elektrické energie",
  address="Hatě",
  isbn="978-80-02-03089-8",
  url="https://www.nzee.cz/download/sbornik/Sbornik_NZEE_2025.pdf"
}