Please use this identifier to cite or link to this item: https://doi.org/10.48441/4427.756
Publisher DOI: 10.3390/vehicles5020025
Title: Influences on vibration load testing levels for BEV automotive battery packs
Language: English
Authors: Heinzen, Till 
Plaumann, Benedikt  
Kaatz, Marcus 
Editor: Gaspar, Peter 
Wang, Junnian 
Keywords: battery electric vehicle; BEV; lithium-ion battery pack; power spectral density; normal tolerance limit; E-mobility; challenges of vehicle electrification
Issue Date: 20-Apr-2023
Publisher: MDPI
Journal or Series Name: Vehicles 
Volume: 5
Issue: 2
Startpage: 446
Endpage: 463
Abstract: 
Battery Electric Vehicles (BEVs) have an increasingly large share of the vehicle market. To ensure a safe and long operation of the mostly large underfloor-mounted traction batteries, they must be developed and tested in advance under realistic conditions. Current standards often do not provide sufficiently realistic requirements for environmental and lifetime testing, as these are mostly based on data measured on cars with an Internal Combustion Engine (ICE). Prior to this work, vibration measurements were performed on two battery-powered electric vehicles and a battery-powered commercial mini truck over various road surfaces and other influences. The measurement data are statistically evaluated so that a statement can be made about the influence of various parameters on the vibrations measured at the battery pack housing and the scatter of the influencing parameters. By creating a load profile based on the existing measurement data, current standards can be questioned and new insights gained in the development of a vibration profile for the realistic testing of battery packs for BEVs.
URI: http://hdl.handle.net/20.500.12738/13665
DOI: 10.48441/4427.756
ISSN: 2624-8921
Review status: This version was peer reviewed (peer review)
Institute: Department Fahrzeugtechnik und Flugzeugbau 
Fakultät Technik und Informatik 
Type: Article
Additional note: Heinzen, T.; Plaumann, B.;Kaatz, M. Influences on Vibration Load Testing Levels for BEV Automotive Battery Packs. Vehicles 2023, 5, 446–463. https://doi.org/10.3390/vehicles5020025. The APC was funded by Hamburg University of Applied Sciences.
Funded by: Hochschule für Angewandte Wissenschaften Hamburg 
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