Study on vibration control system of structures based on magnetic levitation technology

Author:

JIANG Changan1,UENO Satoshi1

Affiliation:

1. Department of Mechanical Engineering, Ritsumeikan University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference12 articles.

1. Dihoru, L., Dietz, M., Crewe, A. J. and Tayor, C. A., Performance requirements of actuation systems for dynamic testing in the European Earthquake Engineering Laboratories, In: Fardis M., Rakicevic Z. (eds) Role of Seismic Testing Facilities in Performance-Based Earthquake Engineering. Geotechnical, Geological, and Earthquake Engineering, Vol.22 (2011). Springer, Dordrecht, pp.119-134.

2. Gutierrez, H. M. and Luijten, H., 5-DOF real-time control of active electrodynamic MAGLEV, IEEE Transactions on Industrial Electronics, Vol.65, No.9 (2018), pp.7468-7466.

3. Haramoto, H., Seto, K. and Koike, Y., Active vibration control of triple flexible structures arranged in parallel, JSME International Journal, Series C, Vol.43, No.3 (2000), pp.712-718.

4. Housner, G., Bergman, L., Caughey, T., Chassiakos, A., Claus, R., Masri, S., Skelton, R., Soong, T., Spencer, B. and Yao, J., Structural control: Past, present, and future, Journal of Engineering Mechanics, Vol.123, No.9 (1997), pp.897-971.

5. Jalili, N., A comparative study and analysis of semi-active vibration-control systems, Journal of Vibration and Acoustics, Vol.124, No.4 (2002), pp.593-605.

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1. Vibration Control of Structure by State Switching of a Floater using Acceleration Signals;Journal of the Japan Society of Applied Electromagnetics and Mechanics;2024

2. 磁気浮上システムを用いた住宅の制振技術;Journal of the Japan Society for Precision Engineering;2023-11-05

3. Vibration Control of Structures by Mass Variation using Magnetic Levitation;2023 14th International Symposium on Linear Drivers for Industry Applications (LDIA);2023-06-28

4. 磁気浮上体の接触・非接触状態の切り替えによる構造物の振動制御;Journal of the Japan Society of Applied Electromagnetics and Mechanics;2023

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