Critical review and functional safety of a battery management system for large‑scale lithium‑ion battery pack technologies
作者机构:Azure Mining Technology CCTEG821 Pacifc HighwaySydneyNSW 2067Australia China Coal Research InstituteBeijing 100013China China Mining Products Safety Approval and Certifcation CenterBeijing 100013China School of Mechanical Electronic and Information EngineeringChina University of Mining and TechnologyBeijing 100083China Beijing Tianma Intelligent Control Technology Co.LtdBeijing 101399China Australian Institute for Innovative MaterialsInstitute for Superconducting and Electronic MaterialsUniversity of WollongongInnovation CampusWollongongNSW 2500Australia
出 版 物:《International Journal of Coal Science & Technology》 (国际煤炭科学技术学报(英文))
年 卷 期:2022年第9卷第3期
页 面:1-17页
核心收录:
基 金:supported by Azure Mining Technology CCTEG and the University of Wollongong
主 题:Battery management system Functional safety Hazardous area Lithium-ion batteries Failure mode analysis Electric transportation Large-scale energy storage
摘 要:The battery management system(BMS)is the main safeguard of a battery system for electric propulsion and machine *** is tasked to ensure reliable and safe operation of battery cells connected to provide high currents at high voltage *** addition to efectively monitoring all the electrical parameters of a battery pack system,such as the voltage,current,and temperature,the BMS is also used to improve the battery performance with proper safety measures within the *** growing acceptance of lithium-ion batteries,major industry sectors such as the automotive,renewable energy,manufacturing,construction,and even some in the mining industry have brought forward the mass transition from fossil fuel dependency to electric powered machinery and redefned the world of energy ***,the functional safety considerations,which are those relating to automatic protection,in battery management for battery pack technologies are particularly important to ensure that the overall electrical system,regardless of whether it is for electric transportation or stationary energy storage,is in accordance with high standards of safety,reliability,and *** the system or product fails to meet functional and other safety requirements on account of faulty design or a sequence of failure events,then the environment,people,and property could be *** paper analyzed the details of BMS for electric transportation and large-scale energy storage systems,particularly in areas concerned with hazardous *** analysis covers the aspect of functional safety that applies to BMS and is in accordance with the relevant industrial standards.A comprehensive evaluation of the components,architecture,risk reduction techniques,and failure mode analysis applicable to BMS operation was also *** article further provided recommendations on safety design and performance optimization in relation to the overall BMS integration.