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Vehicle System Dynamics
International Journal of Vehicle Mechanics and Mobility
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Research Article

Active rack control of steer-by-wire systems for vehicle lateral stability

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Received 26 Dec 2023, Accepted 18 Jul 2024, Published online: 28 Jul 2024

References

  • Huang Y-J, Kuo T-C, Chang S-H. Adaptive sliding-mode control for nonlinearsystems with uncertain parameters. IEEE Trans Syst Man Cybern Part B. 2008;38(2):534–539. doi:10.1109/TSMCB.2007.910740
  • Hang P, Chen X, Wang W. Cooperative control framework for human driver and active rear steering system to advance active safety. IEEE Trans Intell Veh. 2021;6(3):460–469. doi:10.1109/TIV.2020.3037955
  • Feng J, Chen S, Qi Z. Coordinated chassis control of 4WD vehicles utilizing differential braking: traction distribution and active front steering. IEEE Access. 2020;8:81055–81068. doi:10.1109/ACCESS.2020.2990729
  • Kang J, Yoo J, Yi K. Driving control algorithm for maneuverability, lateral stability, and rollover prevention of 4WD electric vehicles with independently driven front and rear wheels. IEEE Trans Veh Technol. 2011;60(7):2987–3001. doi:10.1109/TVT.2011.2155105
  • Fujimoto H, Maeda K. Optimal yaw-rate control for electric vehicles with active front-rear steering and four-wheel driving-braking force distribution. IECON 2013 – 39th annual conference of the IEEE industrial electronics society; 2013 Nov 10–13; 2013.
  • Liu W, He H, Sun F, et al. Integrated chassis control for a three-axle electric bus with distributed driving motors and active rear steering system. Veh Syst Dyn. 2017;55(5):601–625. doi:10.1080/00423114.2016.1267368
  • Zhang H, Wang J. Vehicle lateral dynamics control through AFS/DYC and robust gain-scheduling approach. IEEE Trans Veh Technol. 2016;65(1):489–494. doi:10.1109/TVT.2015.2391184
  • Zhang J, Wang H, Zheng J, et al. Adaptive sliding mode-based lateral stability control of steer-by-wire vehicles with experimental validations. IEEE Trans Veh Technol. 2020;69(9):9589–9600. doi:10.1109/TVT.2020.3003326
  • Zhang J, Wang H, Ma M, et al. Active front steering-based electronic stability control for steer-by-wire vehicles via terminal sliding mode and extreme learning machine. IEEE Trans Veh Technol. 2020;69(12):14713–14726. doi:10.1109/TVT.2020.3036400
  • Zhao W, Qin X, Wang C. Yaw and lateral stability control for four-wheel steer-by-wire system. IEEE/ASME Trans Mechatron. 2018;23(6):2628–2637. doi:10.1109/TMECH.2018.2812220
  • Alfatti F, Montani M, Favilli T, et al. Implementation and performances evaluation of advanced automotive lateral stability controls on a real-time hardware in the loop driving simulator. Appl Sci. 2023;13(11):6592. doi:10.3390/app13116592
  • Du H, Lam J, Cheung K-C, et al. Side-slip angle estimation and stability control for a vehicle with a non-linear tyre model and a varying speed. Proc Inst Mech Eng Part D. 2015;229(4):486–505. doi:10.1177/0954407014547239
  • González LP, Sánchez SS, Garcia-Guzman J, et al. Simultaneous estimation of vehicle roll and sideslip angles through a deep learning approach. Sensors. 2020;20(13):3679. doi:10.3390/s20133679
  • Kim D, Min K, Kim H, et al. Vehicle sideslip angle estimation using deep ensemble-based adaptive Kalman filter. Mech Syst Signal Process. 2020;144:106862. doi:10.1016/j.ymssp.2020.106862
  • Kim K, Lee J, Kim M, et al. Adaptive sliding mode control of rack position tracking system for steer-by-wire vehicles. IEEE Access. 2020;8:163483–163500. doi:10.1109/ACCESS.2020.3021038
  • Irmer M, Degen R, Nüßgen A, et al. Development and analysis of a detail model for steer-by-wire systems. IEEE Access. 2023;11:7229–7236. doi:10.1109/ACCESS.2023.3238107
  • Lee J, Kim KI, Kim M, et al. Haptic control of steer-by-wire systems using parameter estimation of rack system lateral load model. Proc Inst Mech Eng Part D. 2022;236(4):540–552. doi:10.1177/09544070211027526
  • Ribeiro A, Fioravanti A, Moutinho A, et al. Nonlinear state-feedback design for vehicle lateral control using sum-of-squares programming. Veh Syst Dyn. 2022;60(3):743–769. doi:10.1080/00423114.2020.1844905
  • Wu X, Zhang M, Xu M, et al. Adaptive feedforward control of a steer-by-wire system by online parameter estimator. Int J Automot Technol. 2018;19:159–166. doi:10.1007/s12239-018-0015-2
  • Talvala KL, Kritayakirana K, Gerdes JC. Pushing the limits: from lanekeeping to autonomous racing. Annu Rev Control. 2011;35(1):137–148. doi:10.1016/j.arcontrol.2011.03.009
  • Pacejka HB, Sharp RS. Shear force development by pneumatic tyres in steady state conditions: a review of modelling aspects. Veh Syst Dyn. 1991;20(3-4):121–175. doi:10.1080/00423119108968983
  • Abe M. Vehicle dynamics and control. Veh Handling Dyn. 2015: 1–3.
  • Wan EA, Van Der Merwe R, Haykin S. The unscented Kalman filter. In: Kalman filtering and neural networks. New York: Wiley; 2001. p. 221–280.
  • Cho W, Yoon J, Kim J, et al. An investigation into unified chassis control scheme for optimised vehicle stability and manoeuvrability. Veh Syst Dyn. 2008;46(S1):87–105. doi:10.1080/00423110701882330
  • Lee S, Kim K, Moon S, et al. A novel lateral dynamics control strategy of in-wheel motor vehicle to improve agility and straight-line driving stability. IEEE Trans Veh Technol. 2024: 1–16.
  • Botes W, Botha TR, Els PS. Real-time lateral stability and steering characteristic control using non-linear model predictive control. Veh Syst Dyn. 2023;61(4):1063–1085. doi:10.1080/00423114.2022.2057334
  • Boyd SP, Vandenberghe L. Convex optimization. Cambridge University Press; 2004.

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