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The issue of safety has always been one of the most important topics for the automotive industry. What are the functional safety implications on EV/lithium-ion batteries? To help in understanding what is involved Dariusz Szymanski from Flanders’ DRIVE gave a presentation at our previous European ISO 26262 conference on the topic of "Functional safety case study for lithium-ion batteries" "Flanders' DRIVE on functional safety - Case study for lithium-ion batteries" Download the presentation for free HERE: http://bit.ly/SzymanskiPP_FlandersDRIVE
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Confidential - ©2013 Flanders’ DRIVE all rights reserved
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Functional safety case study for lithium-ion batteries
Dariusz Szymanski
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Confidential - ©2013 Flanders’ DRIVE all rights reserved
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•Flander’s DRIVE
•ISO26262 application: • typical
• extended
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Agenda
Confidential - ©2013 Flanders’ DRIVE all rights reserved
Click to edit Master title style Flanders’ DRIVE
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Research institute for the vehicle and mobility industry developing and presenting technological solutions in R&D domains:
Open innovation approach driven by the industry
High-tech Infrastructure for vehicle, system and component testing
Wide international network of 170 partners
Confidential - ©2013 Flanders’ DRIVE all rights reserved
Click to edit Master title style Why EV/lithium-ion batteries?
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2009 2010 2011 2012 2013 2014
Detection of road users in blind spots
Communication Server & mini-base station
ToF-camera / suspension
Active suspension
IEC 61508, SIL3
Battery Management
System (BMS)
ISO 26262, ASIL D
Active suspension,
V2I communication,
ISO 26262, ASIL D
BMS E-Truck
ISO 26262, ASIL D
E-kart
(prototype for
Electric Powertrain)
GPS
vehicle
positioning
Inductive charging
ISO 26262, ASIL B
Electric
Powertrain
ISO 26262,
ASIL D
E-VECTOORC
ISO 26262,
ASIL C
i-compose
ISO 26262
ESto
Energy Storage
ASIL project