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Functional Safety BMS Design Methodology for Automotive Lithium-Based Batteries

Authors :
Jon Crego
Maitane Garmendia
David Marcos
José Antonio Cortajarena
Source :
Addi. Archivo Digital para la Docencia y la Investigación, instname, Energies; Volume 14; Issue 21; Pages: 6942, Energies, Vol 14, Iss 6942, p 6942 (2021), Universidad de Cantabria (UC)
Publication Year :
2021
Publisher :
MDPI, 2021.

Abstract

The increasing use of lithium batteries and the necessary integration of battery management systems (BMS) has led international standards to demand functional safety in electromobility applications, with a special focus on electric vehicles. This work covers the complete design of an enhanced automotive BMS with functional safety from the concept phase to verification activities. Firstly, a detailed analysis of the intrinsic hazards of lithium-based batteries is performed. Secondly, a hazard and risk assessment of an automotive lithium-based battery is carried out to address the specific risks deriving from the automotive application and the safety goals to be fulfilled to keep it under control. Safety goals lead to the technical safety requirements for the next hardware design and prototyping of a BMS Slave. Finally, the failure rate of the BMS Slave is assessed to verify the compliance of the developed enhanced BMS Slave with the functional safety Automotive Safety Integrity Level (ASIL) C. This paper contributes the design methodology of a BMS complying with ISO 26262 functional safety standard requirements for automotive lithium-based batteries.

Details

Language :
English
Database :
OpenAIRE
Journal :
Addi. Archivo Digital para la Docencia y la Investigación, instname, Energies; Volume 14; Issue 21; Pages: 6942, Energies, Vol 14, Iss 6942, p 6942 (2021), Universidad de Cantabria (UC)
Accession number :
edsair.doi.dedup.....af2a163c0cd29aaa870a5d796c2448ce