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

Evaluation of Ride Performance through a Comparative Study of Switchable Damper and Active Suspension by Using Fuzzy and Linear Quadratic Regulator Controller’s Strategies

Journal Article
10-05-01-0002
ISSN: 2380-2162, e-ISSN: 2380-2170
Published January 29, 2021 by SAE International in United States
Evaluation of Ride Performance through a Comparative Study of Switchable Damper and Active Suspension by Using Fuzzy and Linear Quadratic Regulator Controller’s Strategies
Sector:
Citation: Soliman, A., Galal, M., and Mansour, N., "Evaluation of Ride Performance through a Comparative Study of Switchable Damper and Active Suspension by Using Fuzzy and Linear Quadratic Regulator Controller’s Strategies," SAE Int. J. Veh. Dyn., Stab., and NVH 5(1):15-30, 2021, https://doi.org/10.4271/10-05-01-0002.
Language: English

References

  1. Soliman , A.M.A. , Kaldas , M.M.S. , Barton , D.C. , and Brooks , P.C. Fuzzy-Skyhook Control for Active Suspension Systems Applied to a Full Vehicle Model Int. J. Eng. Technol. Innov. 2 2 85 96 2012
  2. Soliman , A.M.A. , Crolla , D.A. , and El-Sayed , F.M. A Comparison of Control Strategies for the Switchable Damper Suspension System International Journal of Vehicle Design 14 4 308 324 1993
  3. Zhang , J. , Gao , R. , Zhao , Z. , and Han , W. Fuzzy Logic Controller Based Genetic Algorithm for Semi-Active Suspension Journal of Scientific & Industrial Research 71 8 521 527 2012
  4. Yu , S. , Wang , F. , Wang , J. , and Chen , H. Full-Car Active Suspension Based on H2/Generalised H2 Output Feedback Control Int. J. Veh. Des. 68 1-3 37 54 2015 https://doi.org/10.1504/IJVD.2015.071074
  5. Kaldas , M. , Soliman , A. , Abdallah , S. , and Amien , F. SAE Technical Paper 2019-01-0165 2019 https://doi.org/10.4271/2019-01-0165
  6. Zhang , Y. , Cao , J. , Zhang , G. , and Yu , F. Robust Controller Design for an Electromagnetic Active Suspension Subjected to Mixed Uncertainties Int. J. Veh. Des. 63 4 423 449 2013 https://doi.org/10.1504/IJVD.2013.057495
  7. Soliman , A.M.A. and Crolla , D.A. A Self-Tuning Controller for a Switchable Damper Suspension International Journal of Engineering Simulation with Industrial Applications 2 2 2001
  8. Eski , İ. and Yildirim , Ş. Vibration Control of Vehicle Active Suspension System Using a New Robust Neural Network Control System Simulation Modelling Practice and Theory 17 5 778 793 2009 https://doi.org/10.1016/j.simpat.2009.01.004
  9. Soliman , M.A. and Crolla , D.A. Preview Control for a Semi-Active Suspension System Int. J. Veh. Des. 17 4 384 397 1996 https://doi.org/10.1504/IJVD.1996.061967
  10. Sakman , L.E. , Guclu , R. , and Yagiz , N. Fuzzy Logic Control of Vehicle Suspensions with Dry Friction Nonlinearity Sadhana-Acad. Proc. Eng. Sci. 30 5 649 659 2005 https://doi.org/10.1007/BF02703512
  11. Soliman , A. Adaptive LQR Control Strategy for Active Suspension System SAE Technical Paper 2011-01-0430 2011 https://doi.org/10.4271/2011-01-0430
  12. Kaldas , M. , Soliman , A. , Abdallah , S. , and Amien , F. Robustness Analysis of the Model Reference Control for Active Suspension System SAE Int. J. Veh. Dyn., Stab., and NVH 4 2 165 177 2020 https://doi.org/10.4271/10-04-02-0012
  13. Williams , D. , Active Suspension: Future Lessons from The Past SAE Int. J. Veh. Dyn., Stab., and NVH 2 2 147 165 2018 https://doi.org/10.4271/10-02-02-0010
  14. Gandhi , P. , Adarsh , S. , and Ramachandran , K.I. Performance Analysis of Half Car Suspension Model with 4 DOF using PID, LQR, FUZZY and ANFIS Controllers Procedia Computer Science 115 2 13 2017
  15. Mailah , M. and Priyandoko , G. Simulation of a Suspension System with Adaptive Fuzzy Active Force Control Int. J. Simul. Model. 6 1 25 36 2007 https://doi.org/10.2507/IJSIMM06(1)3.079
  16. Onsy , A. , Sharaf , A. , Ashrey , M. , and Eldemerdash , S. Influence of Intelligent Active Suspension System Controller Design Techniques on Vehicle Braking Characteristics SAE Int. J. Veh. Dyn., Stab., and NVH 3 1 31 46 2019 https://doi.org/10.4271/10-03-01-0003
  17. Abd-EI-Tawwab , A.M. , Crotla , D.A. , and Plummer , A.R. The Characteristics of a Three-State Switchable Damper J. Low Freq. Noise, Vib. Act. Control 17 2 85 96 1998 https://doi.org/10.1177/026309239801700203
  18. Soong , M.F. , Ramli , R. , Mahadi , W.N.L. , and Saifizul , A. Ride Improvement of Vehicle Suspensions with Switchable Inerter Based on Force Cancellation Strategy J. Vibroengineering 19 2 1260 1272 2017
  19. Chen , M.Z.Q. and Hu , Y. Inerter and Its Application in Vibration Control Systems Beijing Springer Nature Singapore Pre Ltd and Science Press 2019 978-981-10-7089-1
  20. Chen , Y. Skyhook Surface Sliding Mode Control on Semi-Active Vehicle Suspension Systems for Ride Comfort Enhancement Engineering 1 1 23 32 2009 https://doi.org/10.4236/eng.2009.11004
  21. Hassan , S.A. 1986
  22. Robson , J.D. Road Surface Description and Vehicle Response International Journal of Vehicle Design 1 1 25 35 1979
  23. Firth , G.R. 1991

Cited By