This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Evaluation Methodologies in the Development of Dynamically Reconfigurable Systems in the Automotive Industry

Journal Article
2020-01-1363
ISSN: 2641-9645, e-ISSN: 2641-9645
Published April 14, 2020 by SAE International in United States
Evaluation Methodologies in the Development of Dynamically Reconfigurable Systems in the Automotive Industry
Sector:
Citation: Oszwald, F., Bertelo, R., Gericota, M., and Becker, J., "Evaluation Methodologies in the Development of Dynamically Reconfigurable Systems in the Automotive Industry," SAE Int. J. Adv. & Curr. Prac. in Mobility 2(5):2925-2937, 2020, https://doi.org/10.4271/2020-01-1363.
Language: English

References

  1. Aslansefat , K. , Kabir , S. , Gheraibia , Y. , and Papadopoulos , Y. Dynamic Fault Tree Analysis: State-of-the-Art in Modelling, Analysis and Tools Reliability Management and Engineering: Challenges and Future Trends Taylor and Francis
  2. Wang , Q. , Mao , J. , and Wei , H.-Y. Reliability Analysis of Multi-rotor UAV Based on Fault Tree and Monte Carlo Simulation Tan , J. , Gao , F. , and Xiang , C. Advances in Mechanical Design: Proceedings of the 2017 International Conference on Mechanical Design (ICMD2017) / Jianrong Tan, Feng Gao, Changle Xiang Mechanisms and Machine Science, Springer Singapore 2017 55 1525 1534
  3. Kohn , A. , Schneider , R. , Vilela , A. , Dannebaum , U. et al. Markov Chain-based Reliability Analysis for Automotive Fail-Operational Systems SAE Int. J. CAV 5 1 41 50 2017 https://doi.org/10.4271/2017-01-0052
  4. Frigerio , A. , Vermeulen , B. , and Goossens , K. A Generic Method for a Bottom-Up ASIL Decomposition Hoshi , M. and Seki , S. Developments in Language Theory: 22nd International Conference, DLT 2018, Tokyo, Japan, September 10-14, 2018, Proceedings/Mizuho Hoshi, Shinnosuke Seki (eds.)
  5. Fetzer , C. Fail-Awareness: An Approach to Construct Fail-Safe Systems The International Journal of Time-Critical Computing Systems 2 203 238 2003
  6. Dörr , T. , Sandmann , T. , Schade , F. , Bapp , F.K. et al. Leveraging the Partial Reconfiguration Capability of FPGAs for Processor-Based Fail-Operational Systems Hochberger , C. Applied Reconfigurable Computing: 15th International Symposium, ARC 2019, Darmstadt, Germany, April 9-11, 2019, Proceedings/Christian Hochberger, Brent Nelson, Andreas Koch, Roger Woods, Pedro Diniz (eds.)
  7. Avizienis , A. , Laprie , J.-C. , Randell , B. , and Landwehr , C. Basic Concepts and Taxonomy of Dependable and Secure Computing IEEE Trans.Dependable and Secure Comput. 1 1 11 33 2004 10.1109/TDSC.2004.2
  8. Dubrova , E. Fault-Tolerant Design New York, New York Springer 2013
  9. Blieberger , J. and Bader , M. Reliable Software Technologies - Ada-Europe 2017 Cham Springer International Publishing 2017 10300
  10. Cobreces , A. , Tabero , J. , Regadio , A. , Sanchez-Macian , A. et al. SEU and SEFI Protection for DDR3 Memories in a Xilinx Zynq-7000 FPGA 6th IEEE International Conference on Space Mission Challenges for Information Technology: SMC-IT 2017 : proceedings : 27-29 September 2017, Alcalá de Henares, Spain, IEEE Computer Society Conference Publishing Services, Los Alamitos, California 2017 151 153
  11. Laprie , J.-C. Dependable Computing and Fault Tolerance : Concepts and Terminology Twenty-Fifth International Symposium on Fault-Tolerant Computing, 1995, ' Highlights from Twenty-Five Years, Twenty-Fifth International Symposium on Fault-Tolerant Computing, 1995, Highlights from Twenty-Five Years Pasadena, CA IEEE 1995/1995
  12. Prasad , V.B. Fault Tolerant Digital Systems IEEE Potentials 8 1 17 21 1989 10.1109/45.31576
  13. Birolini , A. Reliability Engineering Berlin, Heidelberg Springer Berlin Heidelberg 2014
  14. Xing , L. and Amari , S.V. Fault Tree Analysis Misra , K.B. Handbook of Performability Engineering Berlin and London Springer 2008 595 620 978-1-84800-130-5
  15. Bertolino , A. , Calabro , A. , Di Giandomenico , F. , Lami , G. et al. A Tour of Secure Software Engineering Solutions for Connected Vehicles Software Quality Journal 26 4 1223 1256 2018 10.1007/s11219-017-9393-3
  16. Granig , W. , Hammerschmidt , D. , and Zangl , H. Calculation of Failure Detection Probability on Safety Mechanisms of Correlated Sensor Signals According to ISO 26262 SAE Int. J. Passeng. Cars - Electron. Electr. Syst. 10 1 144 155 2017 https://doi.org/10.4271/2017-01-0015
  17. Verhulst , E. , Sputh , B. , and de Florio , V. From Safety Integrity Level to Assured Reliability and Resilience Level for Compositional Safety Critical Systems ICSSEA 2013 - International Conference on Simulation Software Engineering and Applications 2013
  18. Oszwald , F. , Obergfell , P. , Traub , M. , and Becker , J. Using Simulation Techniques within the Design of a Reconfigurable Architecture for Fail-Operational Real-Time Automotive Embedded Systems IEEE International Symposium on Systems Engineering (ed.), 2018 IEEE International Symposium on Systems Engineering, 2018 IEEE International Symposium on Systems Engineering Rome 2018 1 3 978-1-5386-4446-1
  19. Oszwald , F. , Becker , J. , Obergfell , P. , and Traub , M. Dynamic Reconfiguration for Real-Time Automotive Embedded Systems in Fail-Operational Context 2018 IEEE International Parallel and Distributed Processing Symposium Workshops (IPDPSW) Vancouver, BC, Canada, Canada 2018 206 209 978-1-5386-5555-9
  20. Basagiannis , S. and Gonzalez-Espin , F. Towards Verification of Multicore Motor-Drive Controllers in Aerospace Koornneef , F. and van Gulijk , C. Computer Safety, Reliability, and Security: SAFECOMP 2015 Workshops, ASSURE, DECSoS, ISSE, ReSA4CI, and SASSUR, Delft, the Netherlands, September 22, 2015, Proceedings / Floor Koornneef, Coen van Gulijk (eds.)
  21. Xilinx https://www.xilinx.com/support/documentation/user_guides/ug116.pdf November 1, 2019

Cited By