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

Exploring Use of Ethernet for In-Vehicle Control Applications: AFDX, TTEthernet, EtherCAT, and AVB

Journal Article
2012-01-0196
ISSN: 1946-4614, e-ISSN: 1946-4622
Published April 16, 2012 by SAE International in United States
Exploring Use of Ethernet for In-Vehicle Control Applications: AFDX, TTEthernet, EtherCAT, and AVB
Sector:
Citation: Cummings, R., Richter, K., Ernst, R., Diemer, J. et al., "Exploring Use of Ethernet for In-Vehicle Control Applications: AFDX, TTEthernet, EtherCAT, and AVB," SAE Int. J. Passeng. Cars - Electron. Electr. Syst. 5(1):72-88, 2012, https://doi.org/10.4271/2012-01-0196.
Language: English

References

  1. Ghosal, A. Giusto, P. Sinha, P. Osella, M. D'Ambrosio, P. Zeng, H. “Metrics for Evaluating Electronic Control System Architecture Alternatives,” SAE Technical Paper 2010-01-0453 2010 10.4271/2010-01-0453
  2. Bruckmeier, R. “Ethernet for Automotive Applications” Freescale Technology Forum Orlando, California, USA 2010 2011 http://www.freescale.com/files/ftf_2010/Americas/WBNR_FTF10_AUT_F0558.pdf
  3. ISO 26262 “Road vehicles - Functional safety” 2011
  4. Gall, H. “Domain Driven Networking Technologies for Automotive: FlexRay and Ethernet a symbiosis for in-vehicle networks” DAC Workshop on Intra and Inter-Vehicle Networking: Past, Present, and Future San Diego, California, USA 2011
  5. TTTech “TTEthernet - A Powerful Network Solution for All Purposes” Technical White Paper http://www.tttech.com
  6. “ARINC Report 664P7-1 Aircraft Data Network, Part 7, Avionics Full-Duplex Switched Ethernet Network” September 2009
  7. IEEE 802.3 “IEEE Standard for Information technology-Specific requirements - Part 3: Carrier Sense Multiple Access with Collision Detection (CSMA/CD) Access Method and Physical Layer Specifications” 2008 IEEE Get Program http://standards.ieee.org/about/get/802/802.3.html
  8. IEEE 802.1 “Bridging and Management” IEEE Get Program http://standards.ieee.org/about/get/802/802.1.html
  9. SAE International Aerospace Standard SAE-AS6802 “Time-Triggered Ethernet” Draft Standard
  10. EtherCAT is a registered trademark of EtherCAT Technology Group www.ethercat.org
  11. IEC 61158-SER Ed. 1.0 b 2007 “Digital data communications for measurement and control - Fieldbus for use in industrial control systems - ALL PARTS” 1.0 International Electrotechnical Commission November 2007
  12. CANopen is a registered trademark of CAN in Automation e.V. www.can-cia.org
  13. SERCOS is a registered trademark of the SERCOS International e.V. www.sercos.com
  14. IEEE 802.1AS-2011 “IEEE Standard for Local and Metropolitan Area Networks - Timing and Synchronization for Time-Sensitive Applications in Bridged Local Area Networks” 2011
  15. IEEE 802.1Qav-2009 “IEEE Standard for Local and Metropolitan Area Networks -Virtual Bridged Local Area Networks Amendment 12: Forwarding and Queuing Enhancements for Time-Sensitive Streams” 2009
  16. IEEE 802.1Qat-2010 “IEEE Standard for Local and Metropolitan Area Networks -Virtual Bridged Local Area Networks Amendment 14: Stream Reservation Protocol (SRP)” 2010
  17. IEEE 802.1BA “IEEE Standard for Local and Metropolitan Area Networks - Audio Video Bridging (AVB) Systems” 2011
  18. IEEE 1588-2008 “IEEE Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems” 2008
  19. IEEE 1722-2011 “IEEE Standard for Layer 2 Transport Protocol for Time Sensitive Applications in a Bridged Local Area Network” 2011
  20. IEC 61883 “Consumer audio/video equipment - Digital interface”
  21. IEEE 1733-2011 “IEEE Standard for Layer 3 Transport Protocol for Time-Sensitive Applications in Local Area Networks” 2011
  22. ASAM AE MCD-2 NET BS FIBEX v4.0.0 “Data Model for ECU Network Systems (Field Bus Data Exchange Format)”, market name “FIBEX” ASAM MCD-2 NET 2011 http://www.asam.net
  23. AUTOSAR “Automotive Open System Architecture (AUTOSAR)” 2011 http://www.autosar.org
  24. Stolz, W. Williams, K. Lorenz, T. Piastowski, M. “Ethernet and IP - The Solution to Master Complexity, Safety, and Security in Vehicle Communication Networks?,” SAE Technical Paper 2011-01-1042 10.4271/2011-01-1042
  25. ASAM MCD-1 XCP “The Universal Measurement and Calibration Protocol Family” 2008
  26. ISO 13400 “Road vehicles - Diagnostic communication over Internet Protocol (DoIP)”, Parts 1-3, Part 3 is “Wired vehicle interface based on IEEE 802.3” Approval Stage as of late 2011
  27. Traub, M. Lauer, V. Weber, T. Jersak, M. Richter, K. Becker, J. “Timing Analysis for Verification of Network Architectures” ATZelektronik 03 2009 4
  28. Traub, M. Lauer, V. Becker, J. Jersak, M. Richter, K. Kühl, M. “Using Timing Analysis for Evaluating Communication Behavior and Network Topologies in an Early Design Phase of Automotive Electric/Electronic Architectures,” SAE Technical Paper 2009-01-1379 2009 10.4271/2009-01-1379
  29. Boiger, C. “Class A Latency Issues” IEEE 802.1 Interim Meeting Kaua'i, HI, USA January 2011 http://www.ieee802.org/1/files/public/docs2011/baboiger-class-a-latency-issues-0111.pdf
  30. Symtavision “SymTA/S Model-Based Timing Analysis” http://www.symtavision.com/symtas.html
  31. Henia, R. Hamann, A. Jersak, M. Racu, R. Richter, K. Ernst, R. “System Level Performance Analysis - the SymTA/S Approach” IEE Proceedings Computers and Digital Techniques 2005
  32. Rox, J. Ernst, R. “Formal Timing Analysis of Full Duplex Switched Based Ethernet Network Architectures,” SAE Technical Paper 2010-01-0455 2010 10.4271/2010-01-0455
  33. Nakamura, M. Takeuchi, J. Kim, Y. “QoS requirements for Automotive Ethernet backbone systems” IEEE 802.1 AVB task group September 2011 http://www.ieee802.org/1/files/public/docs2011/new-avbnakamura-automotive-backbone-requirements-0907-v02.pdf

Cited By