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A Novel Coordination Method for an Integrated Chassis Controller of an 8x8 Combat Vehicle

Journal Article
2022-01-0353
ISSN: 2641-9645, e-ISSN: 2641-9645
Published March 29, 2022 by SAE International in United States
A Novel Coordination Method for an Integrated Chassis Controller of an 8x8 Combat Vehicle
Sector:
Citation: Ahmed, M., El-Gindy, M., and Lang, H., "A Novel Coordination Method for an Integrated Chassis Controller of an 8x8 Combat Vehicle," SAE Int. J. Adv. & Curr. Prac. in Mobility 4(4):1250-1263, 2022, https://doi.org/10.4271/2022-01-0353.
Language: English

References

  1. Nagai , M. , Hirano , Y. , and Yamanaka , S. Integrated Control of Active Rear Wheel Steering and Direct Yaw Moment Control Vehicle System Dynamics 27 5-6 1997 357 370
  2. Nagai , M. , Hirano , Y. , and Yamanaka , S. Vehicle System Dynamics 29 sup1 1998 416 421
  3. Fujita , K. , Ohashi , K. , Fukatani , K. , Kamei , S. et al. Development of Active Rear Steer System Applying H8-μ Synthesis SAE Technical Paper 981115 1998 https://doi.org/10.4271/981115
  4. Selmanaj , D. , Corno , M. , Sename , O. , and Savaresi , S. Advantages of Rear Steer in lti and lpv Vehicle Stability Control 52nd IEEE Conference on Decision and Control 3523 3528 2013
  5. Wang , R. , Zhang , H. , and Wang , J. Linear Parameter-Varying Controller Design for Four-wheel Independently Actuated Electric Ground Vehicles with Active Steering Systems IEEE Transactions on Control Systems Technology 22 4 2014 1281 1296
  6. Jing , H. , Wang , R. , Wang , J. , and Chen , N. Robust h∞ Dynamic Output-Feedback Control for Four-Wheel Independently Actuated Electric Ground Vehicles through Integrated AFS/DYC Journal of the Franklin Institute 355 18 9321 9350 2018
  7. Zhang , H. and Wang , J. Vehicle Lateral Dynamics Control Through AFS/DYC and Robust Gain-Scheduling Approach IEEE Transactions on Vehicular Technology 65 1 2016 489 494
  8. Zhang , H. and Wang , J. Chapter 10 - Robust Gain-Scheduling Control of Vehicle Lateral Dynamics through AFS/DYC Zhang , Hui , Cao , Dongpu , and Haiping , Du Modeling, Dynamics and Control of Electrified Vehicles 339 368 Woodhead Publishing 2018
  9. Jalali , M. , Khosravani , S. , Khajepour , A. , Chen , S.-k. et al. Model Predictive Control of Vehicle Stability using Coordinated Active Steering and Differential Brakes Mechatronics 48 2017 30 41
  10. Mirzaeinejad , H. , Mirzaei , M. , and Rafatnia , S. A Novel Technique for Optimal Integration of Active Steering and Differential Braking with Estimation to Improve Vehicle Directional Stability ISA Transactions 80 2018 513 527
  11. Fan , Y. , Li , D.-F. , and Crolla , D.A. Integrated Vehicle Dynamics Control: State-of-the Art Review 2008 IEEE Vehicle Power and Propulsion Conference 1 6 2008
  12. Rahimi , S. and Naraghi , M. Design of an Integrated Control System to Enhance Vehicle Roll and Lateral Dynamics Transactions of the Institute of Measurement and Control 40 5 2018 1435 1446
  13. Ataei , M. , Khajepour , A. , and Jeon , S. Model Predictive Control for Integrated Lateral Stability, Traction/Braking Control, and Rollover Prevention of Electric Vehicles Vehicle System Dynamics 58 1 2020 49 73
  14. Cheng , S. , Li , L. , Liu , C. , Wu , X. et al. Robust LMI-Based h-Infinite Controller Integrating AFS and DYC of Autonomous Vehicles with Parametric Uncertainties IEEE Transactions on Systems, Man, and Cybernetics: Systems 2020 1 10
  15. Tjonnas , J. and Johansen , T.A. Stabilization of Automotive Vehicles using Active Steering and Adaptive Brake Control Allocation IEEE Transactions on Control Systems Technology 18 3 2009 545 558
  16. Meng , Q. , Zhao , T. , Qian , C. , Sun , Z.-y. et al. Integrated Stability Control of AFS and DYC for Electric Vehicle based on Non-Smooth Control International Journal of Systems Science 49 7 2018 1518 1528
  17. Nah , J. and Yim , S. Optimization of Control Allocation with ESC, AFS, ARS and TVD in Integrated Chassis Control Journal of Mechanical Science and Technology 2019 2941 2948
  18. Feng , J. , Chen , S. , and Qi , Z. Coordinated Chassis Control of 4wd Vehicles Utilizing Differential Braking, Traction Distribution and Active Front Steering IEEE Access 8 2020 81055 81068
  19. Taghavifar , H. , Chuan , H. , Taghavifar , L. , Qin , Y. et al. Optimal Robust Control of Vehicle Lateral Stability using Damped Least-Square Backpropagation Training of Neural Networks Neurocomputing 384 2020 256 267
  20. Zhang , J. , Zhou , S. , Li , F. , and Zhao , J. Integrated Nonlinear Robust Adaptive Control for Active Front Steering and Direct Yaw Moment Control Systems with Uncertainty Observer Transactions of the Institute of Measurement and Control 42 16 2020 3267 3280
  21. Moad , K.I.S.S.A.I. , Monsuez , Bruno , Tapus , Adriana , and Martinez , Didier Control Allocation of Active Rear Steering and Vehicle Dynamics Control Using a New Tire Model International Journal of Mechanical Engineering and Robotics Research 2018
  22. Yokoya , Y. , Kizu , R. , Kawaguchi , H. , Ohashi , K. , and Ohno , H. 09 1990
  23. Kawakami , H. , Sato , H. , Tabata , M. 02 1992
  24. He , J. , Crolla , D.A. , Levesley , M.C. , and Manning , W.J. Coordination of Active Steering, Driveline, and Braking for Integrated Vehicle Dynamics control Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 220 10 2006 1401 1420
  25. Yang , X. , Wang , Z. , and Peng , W. Coordinated Control of AFS and DYC for Vehicle Handling and Stability based on Optimal Guaranteed Cost Theory Vehicle System Dynamics 47 1 2009 57 79
  26. Termous , H. , Shraim , H. , Talj , R. , Francis , C. et al. Coordinated Control Strategies for Active Steering, Differential Braking and Active Suspension for Vehicle Stability, Handling and Safety Improvement Vehicle System Dynamics 57 10 2019 1494 1529
  27. Ahangarnejad , A.H. , Melzi , S. , and Ahmadian , M. Integrated Vehicle Dynamics System through Coordinating Active Aerodynamics Control, Active Rear Steering, Torque Vectoring and Hydraulically Interconnected Suspension International Journal of Automotive Technology 20 5 2019 903 915
  28. Yu , Z. , Hou , Y. , Leng , B. , Xiong , L. et al. Disturbance Compensation and Torque Coordinated Control of Four In-Wheel Motor Independent-Drive Electric Vehicles IEEE Access 8 2020 119758 119767
  29. Song , J. Design and Comparison of AFS Controllers with PID, Fuzzy-Logic, and Sliding-Mode Controllers Advances in Mechanical Engineering 5 2013 401548
  30. Song , J. Development and Comparison of Integrated Dynamics Control Systems with Fuzzy Logic Control and Sliding Mode Control Journal of Mechanical science and Technology 27 6 2013 1853 1861
  31. Song , J. Integrated Vehicle Dynamic Controls using Active Rear Wheel Steering and Four Wheel Braking International Journal of Vehicle Systems Modelling and Testing 13 1 2018 26 43
  32. Zhang , X. , Song , C. , Song , S. , Cao , J. et al. Stability Control for Vehicle Dynamic Management with Multi-Objective Fuzzy Continuous Damping Control Applied Sciences 10 21 2020
  33. Kim , W. , Yi , K. , and Lee , J. An Optimal Traction, Braking, and Steering Coordination Strategy for Stability and Manoeuvrability of a Six-Wheel Drive and Six-Wheel Steer Vehicle Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 226 1 2012 3 22
  34. D’Urso , P. 2016
  35. Liu , W. , He , H. , Sun , F. , and Lv , J. Integrated Chassis Control for a Three-Axle Electric Bus with Distributed Driving Motors and Active Rear Steering System Vehicle System Dynamics 55 5 2017 601 625
  36. Ahmed , M. , El-Gindy , M. , and Lang , H. A Novel Adaptive-Rear Axles Steering Controller for an 8× 8 Combat Vehicle Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 2021 09544062211009926
  37. Zhang , J. , Sun , W. , and Feng , Z. Vehicle Yaw Stability Control via h∞ Gain Scheduling Mechanical Systems and Signal Processing 106 2018 62 75
  38. Zhao , W.Z. , Fan , M.L. , Wang , C.Y. , Jin , Z. et al. H∞/Extension Stability Control of Automotive Active Front Steering System Mechanical Systems and Signal Processing 115 2019 621 636
  39. Asiabar , A.N. and Kazemi , R. A Direct Yaw Moment Controller for a Four In-Wheel Motor Drive Electric Vehicle using Adaptive Sliding Mode Control Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics 233 3 2019 549 567
  40. El-Gindy , M. , Ahmed , M. and Lang , H. Handling Performance of an 8x8 Combat Vehicle IOP Conference Series: Materials Science and Engineering 973 012009 IOP Publishing Ltd. 2020
  41. Ahmed , M. , El-Gindy , M. , Lang , H. , and Omar , M. Development of Active Rear Axles Steering Controller For 8X8 Combat Vehicle SAE Technical Paper 2020-01-0174 2020 https://doi.org/10.4271/2020-01-0174
  42. Shibahata , Y. , Irie , N. , Itoh , H. , and Nakamura , K. The Development of an Experimental Four-Wheel-Steering Vehicle SAE Technical Paper 860623 1986 https://doi.org/10.4271/860623
  43. Zhang , J. , Yang , W. , and Feng , P. A Feedback Linearization Controller Combined with a Data-Driven Subspace-based Prediction Method for Vehicle Handling Stabilization Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 233 4 2019 1156 1180
  44. Yi , K. , Park , K. , Joa , E. 04 2019
  45. Rajamani , R. Vehicle Dynamics and Control Springer Science & Business Media 2011
  46. Mokhiamar , O. and Abe , M. Simultaneous Optimal Distribution of Lateral and Longitudinal Tire Forces for the Model Following Control J. Dyn. Sys., Meas., Control 126 4 2004 753 763
  47. Hillegass , M.J. , Faller , J.G. , Bounds , M.S. , El-Gindy , M. , and Joshi , A.S. Validating the Directional Performance of Multi-Wheeled Combat Vehicle Computer Simulation Models ASME 2004 International Mechanical Engineering Congress and Exposition 781 789 American Society of Mechanical Engineers Digital Collection 2004
  48. Hillegass , M.J. , Faller , J.G. , Bounds , M.S. , El-Gindy , M. , and Chae , S. Validating the Vertical Dynamic Performance of a Multi-Wheeled Combat Vehicle Computer Simulation Model ASME 2005 International Mechanical Engineering Congress and Exposition 31 40 American Society of Mechanical Engineers Digital Collection 2005
  49. Odrigo , A. 2017
  50. Mohamed , A. 2018

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