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Year 2019, Volume: 8 Issue: 4, 178 - 185, 10.12.2019
https://doi.org/10.18245/ijaet.531810

Abstract

References

  • 1. Kumar A, Mahajan P, Mohan D, Varghese M. Tractor vibration severity and driver health: a study from rural India. J Agric Eng. Res; 80(4): (2001), 313–28.
  • 2. K.Toyofuku, Ch.Yamada, T.Kagawa, T.Fujita, Study on dynamic characteristic analysis of air spring with auxiliary chamber, JSAE Review 20, (1999), 349–355.
  • 3. R.G. Cobb, J.M. Sullivan, A. Das, L. Porter Davis, T. Tupper Hyde, T. Davis, Z.H. Rahman, J.T. Spanos, Vibration isolation and suspension system for precision payloads in space, Smart Materials & Structures 8 (6), (1999),798–812.
  • 4. Takubo N, Mizuno K. Accident analysis of sports utility vehicles: human factors from statistical analysis and case studies. JSAE Review; 21:2000.
  • 5. D.L. Platus, Negative-stiffness-mechanism vibration isolation systems, in: E.A. Derby, et al. (Eds.), Proceedings of SPIE Conference on Current Developments in Vibration Control for Optomechanical Systems, SPIE, vol. 3786, (1999), pp. 98–105.
  • 6. Sarel F. van der Westhuizen, Pieter S. Els, Slow active suspension control for rollover prevention, Journal of Terramechanics 50, (2013) ,29–36.
  • 7. R. Guclu, Fuzzy Logic Control of Seat Vibrations of a Non-Linear Full Vehicle Model, Nonlinear Dynamics. 40, (2005), 21–34.
  • 8. H. Du, J. Lam, K.Y. Sze, Non-fragile output feedback H1 vehicle suspension control using genetic algorithm, Engineering Applications of Artificial Intelligence 16 (2003) 667–680.
  • 9. Dukkipati RV, Pang J, Qatu MS, Sheng G, Shuguang Road vehicle dynamics. Warrendae (PA): Society of Automotive Engineers; 2008.
  • 10. Marek A, Ksiazek, Daniel Ziemianski, Optimal driver seat suspension for a hybrid model of sitting human body, Journal of Terramechanics 49, (2012), 255–261.
  • 11. [11] Alkhatib R., Jazar G. N. and Golnaraghi, M. F. 2004. Optimal design of passive linear suspension using genetic Algorithm. Journal of Sound and Vibration. 275, 665–691.
  • 12. Hassanin H. S., Rabeih A. M., El-Demerdash S. M., and Younes K. Y. 2008. Active Suspension of Highway Truck Seat Using Genetic Algorithms. SAE International. 2008-01- 1458.
  • 13. XueMei Sun, Yaxu Chu, Jiuchen Fan, Qiuxia Yang, Research of Simulation on the Effect of Suspension Damping on Vehicle Ride, International Conference on Future Electrical Power and Energy Systems (2012), 145 – 151.
  • 14. Reza N. Jazar, Vehicle Dynamics; Theory and Applications, Springer, 2008.

Suspension damping optimization using genetic algorithms

Year 2019, Volume: 8 Issue: 4, 178 - 185, 10.12.2019
https://doi.org/10.18245/ijaet.531810

Abstract

Vehicle
ride comfort is a function of the frequency of transmitting vibrations to
passengers from road irregularities. The objective of this research is to provide a systematic method into the requirement
of the passive suspension based on genetic algorithm (GA). Objective function of GA method is driver’s seat acceleration to
provide driver ride comfort. The passive suspension damping coefficient and
driver’s seat suspension damping coefficient have been optimized. In this
paper, a vehicle with eight degrees of freedom has been simulated to achieve
driver’s seat comfort.  Analytical
results explained by mathematical equations presented in the graphical form
have been included.

References

  • 1. Kumar A, Mahajan P, Mohan D, Varghese M. Tractor vibration severity and driver health: a study from rural India. J Agric Eng. Res; 80(4): (2001), 313–28.
  • 2. K.Toyofuku, Ch.Yamada, T.Kagawa, T.Fujita, Study on dynamic characteristic analysis of air spring with auxiliary chamber, JSAE Review 20, (1999), 349–355.
  • 3. R.G. Cobb, J.M. Sullivan, A. Das, L. Porter Davis, T. Tupper Hyde, T. Davis, Z.H. Rahman, J.T. Spanos, Vibration isolation and suspension system for precision payloads in space, Smart Materials & Structures 8 (6), (1999),798–812.
  • 4. Takubo N, Mizuno K. Accident analysis of sports utility vehicles: human factors from statistical analysis and case studies. JSAE Review; 21:2000.
  • 5. D.L. Platus, Negative-stiffness-mechanism vibration isolation systems, in: E.A. Derby, et al. (Eds.), Proceedings of SPIE Conference on Current Developments in Vibration Control for Optomechanical Systems, SPIE, vol. 3786, (1999), pp. 98–105.
  • 6. Sarel F. van der Westhuizen, Pieter S. Els, Slow active suspension control for rollover prevention, Journal of Terramechanics 50, (2013) ,29–36.
  • 7. R. Guclu, Fuzzy Logic Control of Seat Vibrations of a Non-Linear Full Vehicle Model, Nonlinear Dynamics. 40, (2005), 21–34.
  • 8. H. Du, J. Lam, K.Y. Sze, Non-fragile output feedback H1 vehicle suspension control using genetic algorithm, Engineering Applications of Artificial Intelligence 16 (2003) 667–680.
  • 9. Dukkipati RV, Pang J, Qatu MS, Sheng G, Shuguang Road vehicle dynamics. Warrendae (PA): Society of Automotive Engineers; 2008.
  • 10. Marek A, Ksiazek, Daniel Ziemianski, Optimal driver seat suspension for a hybrid model of sitting human body, Journal of Terramechanics 49, (2012), 255–261.
  • 11. [11] Alkhatib R., Jazar G. N. and Golnaraghi, M. F. 2004. Optimal design of passive linear suspension using genetic Algorithm. Journal of Sound and Vibration. 275, 665–691.
  • 12. Hassanin H. S., Rabeih A. M., El-Demerdash S. M., and Younes K. Y. 2008. Active Suspension of Highway Truck Seat Using Genetic Algorithms. SAE International. 2008-01- 1458.
  • 13. XueMei Sun, Yaxu Chu, Jiuchen Fan, Qiuxia Yang, Research of Simulation on the Effect of Suspension Damping on Vehicle Ride, International Conference on Future Electrical Power and Energy Systems (2012), 145 – 151.
  • 14. Reza N. Jazar, Vehicle Dynamics; Theory and Applications, Springer, 2008.
There are 14 citations in total.

Details

Primary Language English
Subjects Mechanical Engineering
Journal Section Article
Authors

Ali Hemati

Alireza Shooshtari This is me

Publication Date December 10, 2019
Submission Date February 24, 2019
Published in Issue Year 2019 Volume: 8 Issue: 4

Cite

APA Hemati, A., & Shooshtari, A. (2019). Suspension damping optimization using genetic algorithms. International Journal of Automotive Engineering and Technologies, 8(4), 178-185. https://doi.org/10.18245/ijaet.531810
AMA Hemati A, Shooshtari A. Suspension damping optimization using genetic algorithms. International Journal of Automotive Engineering and Technologies. December 2019;8(4):178-185. doi:10.18245/ijaet.531810
Chicago Hemati, Ali, and Alireza Shooshtari. “Suspension Damping Optimization Using Genetic Algorithms”. International Journal of Automotive Engineering and Technologies 8, no. 4 (December 2019): 178-85. https://doi.org/10.18245/ijaet.531810.
EndNote Hemati A, Shooshtari A (December 1, 2019) Suspension damping optimization using genetic algorithms. International Journal of Automotive Engineering and Technologies 8 4 178–185.
IEEE A. Hemati and A. Shooshtari, “Suspension damping optimization using genetic algorithms”, International Journal of Automotive Engineering and Technologies, vol. 8, no. 4, pp. 178–185, 2019, doi: 10.18245/ijaet.531810.
ISNAD Hemati, Ali - Shooshtari, Alireza. “Suspension Damping Optimization Using Genetic Algorithms”. International Journal of Automotive Engineering and Technologies 8/4 (December 2019), 178-185. https://doi.org/10.18245/ijaet.531810.
JAMA Hemati A, Shooshtari A. Suspension damping optimization using genetic algorithms. International Journal of Automotive Engineering and Technologies. 2019;8:178–185.
MLA Hemati, Ali and Alireza Shooshtari. “Suspension Damping Optimization Using Genetic Algorithms”. International Journal of Automotive Engineering and Technologies, vol. 8, no. 4, 2019, pp. 178-85, doi:10.18245/ijaet.531810.
Vancouver Hemati A, Shooshtari A. Suspension damping optimization using genetic algorithms. International Journal of Automotive Engineering and Technologies. 2019;8(4):178-85.