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Parameter Identification and Validation for Combined Slip Tire Models Using a Vehicle Measurement System

Journal Article
2018-01-1339
ISSN: 2380-2162, e-ISSN: 2380-2170
Published April 03, 2018 by SAE International in United States
Parameter Identification and Validation for Combined Slip Tire Models Using a Vehicle Measurement System
Sector:
Citation: Van Gennip, M. and McPhee, J., "Parameter Identification and Validation for Combined Slip Tire Models Using a Vehicle Measurement System," SAE Int. J. Veh. Dyn., Stab., and NVH 2(4):297-310, 2018, https://doi.org/10.4271/2018-01-1339.
Language: English

References

  1. Li , K. , Hang , Y. , Jiang , Y. , He , C. et al. A Path Planning Method Based on Large Amount of Artificial Driving Trajectories SAE Technical Paper 2018-01-1588 2018 10.4271/2018-01-1588
  2. Zhong , Y. , Wang , S. , Xie , S. , Cao , Z. et al. 3D Scene Reconstruction with Sparse LiDAR Data and Monocular Image in Single Frame SAE Int. J. Passeng. Cars-Electron. Electr. Syst. 11 1 48 56 2018 10.4271/07-11-01-0005
  3. Hu , C. , Wang , Y. , Yu , G. , Wang , Z. et al. Embedding CNN-Based Fast Obstacles Detection for Autonomous Vehicles SAE Technical Paper 2018-01-1622 2018 10.4271/2018-01-1622
  4. Hu , Y. and Furukawa , T. A High-Resolution Surface Image Capture and Mapping System for Public Roads SAE Int. J. Passeng. Cars-Electron. Electr. Syst. 10 2 301 309 2017 10.4271/2017-01-0082
  5. Bacha , S. , Ayad , M.Y. , Saadi , R. , Aboubou , A. et al. Modeling and Control Technics for Autonomous Electric and Hybrid Vehicles Path Following 2017 5th International Conference on Electrical Engineering - Boumerdes (ICEE-B) Boumerdes 2017 1 12 10.1109/ICEE-B.2017.8191998
  6. Sabry , Y. , Aly , M. , Oraby , W. , and El-Demerdash , S. Fuzzy Control of Autonomous Intelligent Vehicles for Collision Avoidance Using Integrated Dynamics SAE Int. J. Passeng. Cars -Mech Syst. 11 1 5 21 2018 10.4271/06-11-01-0001
  7. Kim , C. , Ludwig , C. , Park , S. , and IM , C. Improvement of Tire Development Process through Study of Tire Test Procedure and Vehicle Correlation SAE Technical Paper 2018-01-1337 2018 10.4271/2018-01-1337
  8. Wu , Y. , Wang , L. , and Li , F. A Robust Path Tracking Control Method for Intelligent Vehicle SAE Technical Paper 2018-01-1582 2018 10.4271/2018-01-1582
  9. Rajamani , R. Vehicle Dynamics and Control Springer 2006
  10. Svendenius , J. and Wittenmark , B. Brush Tire Model with Increased Flexibility 2003 European Control Conference (ECC) Cambridge, UK 2003 1863 1868 10.23919/ECC.2003.7085237
  11. Yamashita , H. , Matsutani , Y. , and Sugiyama , H. Longitudinal Tire Dynamics Model for Transient Braking Analysis: ANCF-LuGre Tire Model ASME Journal of Computational and Nonlinear Dynamics 10 3 031003-031003-11 2015 10.1115/1.4028335
  12. Ding , N. and Taheri , S. A Modified Dugoff Tire Model for Combined-Slip Forces Tire Science and Technology 38 3 228 244 2010 10.2346/1.3481696
  13. Chen , L. , Bian , M. , Luo , Y. , and Li , K. Maximum Tire Road Friction Estimation Based on Modified Dugoff Tire Model 2013 International Conference on Mechanical and Automation Engineering Jiujang 2013 56 61 10.1109/MAEE.2013.24
  14. Guarneri , P. , Rocca , G. , and Gobbi , M. A Neural-Network-Based Model for the Dynamic Simulation of the Tire/Suspension System while Traversing Road Irregularities IEEE Transactions on Neural Networks 19 9 1549 1563 2008 10.1109/TNN.2008.2000806
  15. Acosta , M. , Kanarachos , S. and Fitzpatrick , M.E. Optimized Tire Force Estimation Using Extended Kalman Filter and Fruit Fly Optimization IECON 2017-43rd Annual Conference of the IEEE Industrial Electronics Society Beijing 2017 4074 4079 10.1109/IECON.2017.8216698
  16. Yang , X. , Olatunbosun , O. , and Bolarinwa , E. Materials Testing for Finite Element Tire Model SAE Int. J. Mater. Manuf. 3 1 211 220 2010 10.4271/2010-01-0418
  17. McBride , S. , Sandu , C. , Alatorre , A. , and Victorino , A. Estimation of Vehicle Tire-Road Contact Forces: A Comparison between Artificial Neural Network and Observed Theory Approaches SAE Technical Paper 2018-01-0562 2018 10.4271/2018-01-0562
  18. Radhakrishnan , A. , Rampal , H. , and Ramarathnam , K. Reduced Order Model for Tire Dynamics SAE Technical Paper 2017-26-0342 2017 10.4271/2017-26-0342
  19. Pacejka , H.B. Tyre and Vehicle Dynamics Third Oxford Butterworth-Heinemann 2012
  20. Zhang , R. Path Following of Skid Steering Vehicles Based on Line-Of-Sight Navigation SAE Technical Paper 2016-01-1871 2016 10.4271/2016-01-1871
  21. A&D Technology https://www.aanddtech.com/
  22. Batra , M. , McPhee , J. , and Azad , N.L. Anti-Jerk Dynamic Modeling and Parameter Identification of an Electric Vehicle Based on Road Tests ASME Journal of Computational and Nonlinear Dynamics 13 10 101005-101005-13 2018 10.1115/1.4040870
  23. Buggaveeti , S. , Batra , M. , McPhee , J. , and Azad , N. Longitudinal Vehicle Dynamics Modeling and Parameter Estimation for Plug-In Hybrid Electric Vehicle SAE Int. J. Veh. Dyn., Stab., and NVH 1 2 289 297 2017 10.4271/2017-01-1574
  24. Vehicle Dynamics Standards Committee 2008
  25. Kageyama , I. and Kuwahara , S. A Study on Tire Modeling for Camber Thrust and Camber Torque JSAE Review 23 3 325 331 2002
  26. Li , S. 2013
  27. Pearson , M. , Blanco-Hague , O. , and Pawlowski , R. TameTire: Introduction to the Model Tire Science and Technology 44 2 102 119 2016
  28. Fevrier , P. and Fandard , G. 2007
  29. Durand-Gasselin , B. , Dailliez , T. , Mössner-Beigel , M. , Knorr , S. et al. Assessing the Thermo-Mechanical TaMeTirE Model in Offline Vehicle Simulation and Driving Simulator Tests Vehicle System Dynamics 48 211 229 2010
  30. ISO 4138:2012(en)
  31. ISO 3888-1:1999(en)
  32. ISO 3888-2:2011(en)
  33. ISO 7401:2012(en)
  34. Brach , R. and Brach , M. The Tire-Force Ellipse (Friction Ellipse) and Tire Characteristics SAE Technical Paper 2011-01-0094 2011 10.4271/2011-01-0094
  35. Pottinger , M. , Pelz , W. , and Falciola , G. Effectiveness of the Slip Circle, “COMBINATOR”, Model for Combined Tire Cornering and Braking Forces when Applied to a Range of Tires SAE Technical Paper 982747 1998 10.4271/982747
  36. Naoshi , M. and Kazuyuki , K. A Study of the Cornering Force by Use of the Analytical Tyre Model Vehicle System Dynamics 43 123 134 2005
  37. MSC Software 2009
  38. Maplesoft https://www.maplesoft.com/
  39. Hall , A. , Schmitke , C. , and McPhee , J. Formulation of Path- and Surface-Following Joints for Multibody Dynamics ASME Int. Design Eng. Tech. Conf. Boston, USA 2015

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