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GENERATION OF ASYMMETRIC F-v CHARACTERISTICS FOR SYMMETRIC MR DAMPERS 被引量:1

GENERATION OF ASYMMETRIC F-v CHARACTERISTICS FOR SYMMETRIC MR DAMPERS
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摘要 An asymmetric damping force generation algorithm is originally proposed to yield the asymmetric force-velocity characteristics for the symmetric magneto-rheological (MR) dampers. The command current is formulated in an asymmetric manner to excite the symmetric MR dampers by employing the “on-off” control law in response to the direction of velocity, and a smooth modulation function is developed without phase shift to suppress strong transients in the damping forces caused by the current-switching discontinuity. The effectiveness of the proposed algorithm is evaluated by analyzing the dynamic responses of a quarter-vehicle suspension system with a symmetric MR-damper by modulating the command current into the asymmetric manner. The simulation results show that the proposed algorithm could achieve a better compromise between the conflicting requirements of the asymmetric damping force ratio and the force-velocity curve smoothness, and the asymmetric damping MR-suspension design can ideally improve the road holding and ride performances of vehicle motion. The proposed algorithm can be generally incorporated with a controller synthesis to realize an intelligent vehicle suspension design with the symmetric MR dampers. An asymmetric damping force generation algorithm is originally proposed to yield the asymmetric force-velocity characteristics for the symmetric magneto-rheological (MR) dampers. The command current is formulated in an asymmetric manner to excite the symmetric MR dampers by employing the “on-off” control law in response to the direction of velocity, and a smooth modulation function is developed without phase shift to suppress strong transients in the damping forces caused by the current-switching discontinuity. The effectiveness of the proposed algorithm is evaluated by analyzing the dynamic responses of a quarter-vehicle suspension system with a symmetric MR-damper by modulating the command current into the asymmetric manner. The simulation results show that the proposed algorithm could achieve a better compromise between the conflicting requirements of the asymmetric damping force ratio and the force-velocity curve smoothness, and the asymmetric damping MR-suspension design can ideally improve the road holding and ride performances of vehicle motion. The proposed algorithm can be generally incorporated with a controller synthesis to realize an intelligent vehicle suspension design with the symmetric MR dampers.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第2期237-242,共6页 中国机械工程学报(英文版)
基金 This project is supported by Senior Visiting Scholarship of Chinese Scholarship Council, China(No.20H05002) Provincial Naturial Science Foundation of Education Commission of Jiangsu, China(No.03KJB510072)Doctoral Scholarship of Concordia University, Canada.
关键词 Magneto-rheological (MR) fluids damper Asymmetric F-ν characteristics SMOOTHNESS Vehicle suspension Magneto-rheological (MR) fluids damper Asymmetric F-ν characteristics Smoothness Vehicle suspension
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  • 1[1]Wang E R,Ma X Q,Rakheja S,et al.Modeling hysteretic characteristics of an MR-fluid damper.Procs.of the Inst.of Mech.Engrs.,J.of Autom- obile Engineering,2003,217(D7):537~550
  • 2[2]Ma X Q,Wang E R,Su C Y,et al.Modeling hysteretic characteristics of MR-fluid damper and model validation.Proc.of the 41st IEEE Conference on Decision and Control,Las Vegas,Nevada USA,December 2002:1 675~1680
  • 3[3]Rakheja S,John W.Role of suspension damping in enhancement of road friendliness of heavy vehicles.Heavy Vehicle System,Int.J.of Vehicle Design,1996,3 (s 1~4):363~381
  • 4[4]Wang E R,Ma X Q,Rakheja S,et al.A general model of an MR-fluid damper.In:Int.9th Conf.On Sound And Vibration,Orlando,Florida,USA,July,2002:412
  • 5[5]Wang E R,Ma X Q,Rakheja S,et al.Semi-active control study of asymmetric MR damper in vehicle suspension.J.of Nanjing Normal University,2003,3(3):1~7
  • 6[6]Carlson J D,Sproston J L.Controllable Fluids in 2000 - Status of ER and MR Fluid Technology.In:7th Int.Conf.on New Actuator,Bermen,Germany,2000,126~130
  • 7[7]Wang E R,Ma X Q.Semi-active control for vibration attenuation of vehicle suspension with symmetry MR-damper.J of Southeast University,2003,19(3):264~269
  • 8[8]Wereley N M,Pang L,Kamath G M.Idealized hysteresis modeling of electro-rheological and magneto-rheological dampers.J.of Intelligent Material Systems and Structures,1999,9(8):642~649
  • 9[9]Spencer Jr B F,Dyke S J,Sain M K,et al.Phenomenological model for a magneto-rheological damper.J.of Eng.Mech.,Am.Society of Civil Engineers,1997,123(3):230~238
  • 10[10]Choi S B,Lee S K.A hysteresis model for the field-dependent damping force of a magnetor-rheological damper.J.of Sound and Vibration,2001,245(2):375~383

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