Open Access

E-Mobility-Opportunities and Challenges of Integrated Corner Solutions

Journal Article
2021-01-0984
ISSN: 2641-9645, e-ISSN: 2641-9645
Published April 06, 2021 by SAE International in United States
E-Mobility-Opportunities and Challenges of Integrated Corner
                    Solutions
Sector:
Citation: Armengaud, E., Eitzinger, S., Pirker, H., Buh, J. et al., "E-Mobility-Opportunities and Challenges of Integrated Corner Solutions," SAE Int. J. Adv. & Curr. Prac. in Mobility 3(5):2462-2472, 2021, https://doi.org/10.4271/2021-01-0984.
Language: English

References

  1. European Automobile Manufacturer Association http://www.acea.be/publications/article/acea-pocket-guide
  2. https://ec.europa.eu/clima/sites/clima/files/international/paris_protocol/docs/com_2015_81_en.pdf
  3. European Commission, Mobility and Transport March 2015 https://ec.europa.eu/transport/sites/transport/files/road_safety/pdf/vademecum_2015.pdf
  4. https://tfl.gov.uk/info-for/media/press-releases/2017/november/gla---ultra-low-emission-zone-will-start-in-2019
  5. http://www.dw.com/en/daimler-buys-car2go-on-road-to-car-sharing-venture-with-bmw/a-42781570
  6. https://www.bcg.com/de-at/publications/2017/connected-vehicles-road-revenue.aspx
  7. https://www.theguardian.com/environment/2017/dec/25/norway-leads-way-electric-cars-green-taxation-shift
  8. ERTRAC 2017
  9. Armengaud , E. et al. EVC1000-Integrated Corner Solution for Innovative Electric Vehicles Proceedings of 8th Transport Research Arena TRA 2020
  10. Frajnkovic , M. , Omerovic , S. , Rozic , U. , Kern , J. et al. Structural Integrity of In-Wheel Motors SAE Technical Paper, 2018-01-1829 2018 https://doi.org/10.4271/2018-01-1829
  11. Al Sakka , M. , Dhaens , M. , and Lauwerys , C. 2019
  12. Gysen , B.L.J. , Lomonova , E.A. , Paulides , J.J.H. , and Vandenput , A.J.A. Analytical and Numerical Techniques for Solving Laplace and Poisson Equations in a Tubular Permanent-Magnet Actuator: Part I. Semi-Analytical Framework IEEE Transactions on Magnetics 44 7 1751 1760 Aug 2008 10.1109/TMAG.2008.922416
  13. De Novellis , L. , Sorniotti , A. , Gruber , P. , Orus , J. et al. Direct Yaw Moment Control Actuated through Electric Drivetrains and Friction Brakes: Theoretical Design and Experimental Assessment Mechatronics 26 1 15 2015
  14. Ziehl-Abegg https://www.ziehl-abegg.com/fileadmin/Downloadcenter_NEW/00_englisch%28EN%29_MASTER/X01_Brochures_Flyers/Flyer-ZAwheel-en.pdf
  15. Press Release https://www.prnewswire.com/news-releases/hfm-and-elaphe-propulsion-technologies-announce-cooperation-on-pioneering-solutions-for-the-future-of-mobility-300780834.html
  16. Biček , M. et al. 81 2019 1278 1283
  17. Heydrich , M. , Ricciardi , V. , Ivanov , V. , and Augsburg , K.
  18. Chatzikomis , C. , Zanchetta , M. , Gruber , P. , Sorniotti , A. et al. An Energy-Efficient Torque-Vectoring Algorithm for Electric Vehicles with Multiple Motors Mechanical Systems and Signal Processing 128 655 673 2019
  19. De Filippis , G. , Lenzo , B. , Sorniotti , A. , Gruber , P. , and De Nijs , W. Energy-Efficient Torque-Vectoring Control of Electric Vehicles With Multiple Drivetrains IEEE Transactions on Vehicular Technology 67 6 4702 4715 2018
  20. Parra , A. , Tavernini , D. , Gruber , P. , Sorniotti , A. , Zubizarreta , A. , and Pérez , J. On Nonlinear Model Predictive Control for Energy-Efficient Torque-Vectoring IEEE Transactions on Vehicular Technology 2020
  21. Ricco , M. , Zanchetta , M. , Rizzo , G.C. , Tavernini , D. et al. On the Design of Yaw Rate Control Via Variable Front-to-Total Anti-Roll Moment Distribution IEEE Transactions on Vehicular Technology 69 2 1388 1403 2020
  22. Ricco , M. , Percolla , A. , Cardolini Rizzo , G. , Zanchetta , M. , Tavernini , D. , Dhaens , M. , Geraerts , M. , Vigliani , A. , Tota , A. , and Sorniotti , A. On the Model-Based Design of Front-to-Total Anti-Roll Moment Distribution Controllers for Yaw Rate Tracking Vehicle System Dynamics 2020
  23. Savitski , D. et al. Robust Continuous WSC with Reference Adaption: Application to the Brake System with Decoupled Architecture IEEE Transactions on Industrial Informatics 14 9 4212 4223 2018

Cited By