An Experimental Feasibility Study on Regenerative Semi-Active Suspension Systems

سال انتشار: 1391
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 1,745

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شناسه ملی سند علمی:

ISAV02_221

تاریخ نمایه سازی: 26 اسفند 1391

چکیده مقاله:

This paper presents results of an experimental study on a regenerative semi-active suspension system. In this paper, a novel design of a suspension fork, equipped with an MR damper on one side and an electricgenerator on the other side, will be proposed. In this research the rotary electric generator is attached to agearbox which converts the linear displacement to unidirectional rotation. First, the system will be tested inorder to find an optimal input resistance of power converter attached to the regenerative damper for generatingmaximum power. The generated power is studied in each condition. Finally the effect of the MR damperon the vibrations of the system is studied

کلیدواژه ها:

Semi-Active Regenerative suspension system ، Energy Harvesting ، Vibration Control

نویسندگان

Mohammad Mehdi Naserimojarad

School of Electrical and Computer Engineering, Shiraz University

Ali Tadayoninejad

School of Mechanical Engineering, Shiraz University, Shiraz, Iran

Mehrdad Moallem

Professor, Mechatronic Systems Engineering, Simon Fraser University

Mohammad Eghtesad

Professor, School of Mechanical Engineering, Shiraz University, Shiraz, Iran,

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  • harvesting, " nergyث mechanical coupling _ _ storage through piezoelectric ...
  • F. Khameneifar, M. Moallem, and S. Arzanpour, "Modeling and analysis ...
  • K. Vij ayaraghavan and R. Rajamani, ":Ultra-low power control system ...
  • , pp. 252-266, Mar. 2010. ...
  • K. Nakano and Y. Suda, :Combined type self-powered active vibration ...
  • Y. Zhang, K. Huang, F. Yu, Y. Gu, and D. ...
  • A. Stribrsky, K. Hyniova, J. Honcu, andA.Kruczek, "Energy recuperation in ...
  • X. Lin and G. Xuexun, "Hydraulic transmission elec tromagnetic energ ...
  • I. Martins, J. Esteves, G. D. Marques, and F. P. ...
  • A. Kim and Y. Okada, :Variable resistance type energy regenerative ...
  • 1. Gordaninejad, F. and Kelso, S. P. "Fail-safe magnetorheolo gical ...
  • Kamat, G. M, Wereley, N. M. and Jolly, M. R. ...
  • Gandhi, F., Wang, K.W. and Xia, L, "Magnetorheo logical fluid ...
  • M. M. Naserimojarad, A. Tadayoninejad, M. Eghtesad, _ General Fast-Response ...
  • Dixit R K and Buckner G D, "Sliding mode observation ...
  • Nilkhamhang, I. Sano, A., "Stability assured robust adaptive control of ...
  • Choi, Y. T., Wereley, T. M. and Jeon, Y. S., ...
  • B. Sapinski , " Characterization of semi-active vibration contro system ...
  • Mechatronics, Istanbul, Turkey, April 13-15, 2011. ...
  • B. Sapinski, "Vibration power generator for a linear MR damper ...
  • B. Ebrahimi , "Development of Hybrid Electromagnetic Dampers for Vehicle ...
  • S. Liu, H. Wei, W. Wang , " Investigation on ...
  • B.F. Spencer Jr., s. Dyke, M.K. Sain and J.D Carlson, ...
  • X. Song, M. Ahmadian, S. C. Southward, "Modeling Magneto rheological ...
  • R. Sabzehgar, M. Moallem, _ Boost-Type Power Converter for Ene ...
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