Fail-operational Safety Architecture for ADAS/AD Systems and a Model-driven Approach for Dependent Failure Analysis (Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart) - Tapa blanda

Sari, Bülent

 
9783658294212: Fail-operational Safety Architecture for ADAS/AD Systems and a Model-driven Approach for Dependent Failure Analysis (Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart)

Sinopsis

Bülent Sari deals with the various fail-operational safety architecture methods developed with consideration of domain ECUs containing multicore processors and describes the model-driven approaches for the development of the safety lifecycle and the automated DFA. The methods presented in this study provide fail-operational system architecture and safety architecture for both conventional domains such as powertrains and for ADAS/AD systems in relation to the processing chain from sensors to actuators.

About the Author:

Bülent Sari works as a functional safety expert for autonomous driving projects. His doctoral thesis was supervised at the Institute of Internal Combustion Engines and Automotive Engineering, University of Stuttgart, Germany. He is a technical lead for not only functional safety in vehicles, but also for SOTIF, embracing the ISO 26262 standard as well as ISO PAS 21448. In this role, he coordinates and organizes the safety case execution of several product groups within different divisions of ZF.

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Acerca del autor

Bülent Sari works as a functional safety expert for autonomous driving projects. His doctoral thesis was supervised at the Institute of Internal Combustion Engines and Automotive Engineering, University of Stuttgart, Germany. He is a technical lead for not only functional safety in vehicles, but also for SOTIF, embracing the ISO 26262 standard as well as ISO PAS 21448. In this role, he coordinates and organizes the safety case execution of several product groups within different divisions of ZF.

De la contraportada

<div>Bülent Sari deals with the various fail-operational safety architecture methods developed with consideration of domain ECUs containing multicore processors and describes the model-driven approaches for the development of the safety lifecycle and the automated DFA. The methods presented in this study provide fail-operational system architecture and safety architecture for both conventional domains such as powertrains and for ADAS/AD systems in relation to the processing chain from sensors to actuators.</div><div><br></div><div><b>Contents</b></div><div><ul><li>Fail-Operational Safety Architectures for ADAS/AD Systems</li><li>ASIL Decomposition for ADAS/AD Systems</li><li>Model-driven Approaches for ISO 26262 Work Products and DFA</li><li>A Model-driven Approach for DFA Using Modified EAST-ADL</li></ul></div><div><b>Target Groups</b></div><div><ul><li>Researchers and students in the field of autonomous driving and functional safety</li><li>Automotive engineers in these fields</li></ul></div><div><b>About the Author</b></div><div><b>Bülent Sari </b>works as a functional safety expert for autonomous driving projects. His doctoral thesis was supervised at the Institute of Internal Combustion Engines and Automotive Engineering, University of Stuttgart, Germany. He is a technical lead for not only functional safety in vehicles, but also for SOTIF, embracing the ISO 26262 standard as well as ISO PAS 21448. In this role, he coordinates and organizes the safety case execution of several product groups within different divisions of ZF.&nbsp;</div><div><br></div>

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