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Fuzzy control of hybrid base-isolator with magnetorheological damper and friction pendulum system

MR 감쇠기와 FPS를 이용한 하이브리드 면진장치의 퍼지제어

  • Kim, Hyun-Su ;
  • Roschke, P.N. (Department of civil engineering, Texas A&M University) ;
  • Lin, P.Y. (Associate research fellow, National Center of Research on Earthquake Engineering)
  • 김현수 (성균관대학교 건충공학과 연구원) ;
  • ;
  • Published : 2005.02.01

Abstract

Shaking table tests are carried out on a single-degree-of-freedom mass that is equipped with a hybrid base isolation system. The isolator consists of a set of four specially-designed friction pendulum systems (FPS) and a magnetorheological (MR) damper. The structure and its hybrid isolation system are subjected to various intensities of near- and far-fault earthquakes on a large shake table. The proposed fuzzy controller uses feedback from displacement or acceleration transducers attached to the structure to modulate resistance of the semi-active damper to motion. Results from several types of passive and semi-active control strategies are summarized and compared. The study shows that a combination of FPS isolators and an adjustable MR damper can effectively provide robust control of vibration for a large full-scale structure undergoing a wide variety of seismic loads.

본 연구에서는 하이브리드 면진장치가 설치된 단자유도 구조물에 대하여 진동대 실험을 수행하였다. 본 연구에서 사용된 하이브리드 면진장치는 네 개의 FPS와 한 개의 MR 감쇠기로 구성하였다. 다양한 크기 및 특성을 가진 지진하중을 하이브리드 면진장치가 설치된 구조물에 가하여 진동제어 성능을 평가하였다. 본 연구에는 준능동 MR 감쇠기의 저항력을 효과적으로 조절하기 위하여 퍼지제어기를 사용하였고 구조물에 부착된 계측기를 통하여 변위 및 가속도를 피드백으로 이용한다. 수동 및 준능동 제어기법을 사용하여 얻은 구조물의 응답을 서로 비교하였고 그 결과 FPS와 MR 감쇠기의 조합으로 다양한 특성의 하중을 받는 구조물의 진동제어를 효과적으로 수행할 수 있음을 알 수 있다.

Keywords

References

  1. Naeim, F. and Kelly, J. M., Desing of Seismic Isolated Structures: from Theory to Practice. Wuley: New York, 1999
  2. Chang, S. P., Makris, N., Whittaker, A. S., and Thompson, A. C. T., 'Experimental and analytical studies on the performance of hybrid isolation systems,' Earthquake Engineering and Structural Dynamics, Vol. 31, 2002, pp. 421-443 https://doi.org/10.1002/eqe.117
  3. Sadek, F. and Mohraz, B., 'Semiactive control algorithm for structures with variable dampers,' Journal of Engineering Mechanics, 1998. 9, pp.981-990
  4. Symans, M. D. and Constantinou, M. C., 'Seismic testing of a building structure with a semi-active fluid damper control system,' Earthquake Engineering and Structural Dynamics, Vol. 26, 1997, pp. 759-777 https://doi.org/10.1002/(SICI)1096-9845(199707)26:7<759::AID-EQE675>3.0.CO;2-E
  5. Kobori, T., Takahashi, M., Nasu, T., and Niwa, N., 'Seismic response controlled structure with active variable stiffness system,' Earthquake Engineering and Structural Dynamics, Vol. 22, 1993, pp. 925-941 https://doi.org/10.1002/eqe.4290221102
  6. Kurata, N., Kobori, T., Takahashi, M., Niwa, N., and Midorikawa, H., 'Actual seismic response of controlled building with semi-active damper system,' Earthquake Engineering and Structural Dynamics, Vol. 28, 1999, pp. 1427-1447 https://doi.org/10.1002/(SICI)1096-9845(199911)28:11<1427::AID-EQE876>3.0.CO;2-#
  7. Niwa, N., Kobori, T., Takahashi, M., Midorikawa, H., Kurata, N., and Mizuno, T., 'Dynamic loading test and simulation analysis of full-scale semi-active hydraulic damper for structural control,' Earthquake Engineering and Structural Dynamics, Vol. 29, 2000, pp. 789-812 https://doi.org/10.1002/(SICI)1096-9845(200006)29:6<789::AID-EQE933>3.0.CO;2-A
  8. Burton, S. A., Makris, N., Konstantopoulos, I., and Antsaklis, P. J., 'Modeling the response of ER damper: phenomenology and emulation,' Journal of Engineering Mechanics, 1996. 9, pp. 897-906
  9. Spencer, Jr. B. F., Dyke, S. J., Sain, M. K., and Carlson, J. D., 'Phenomenological model of magnetorheological dampers,' Journal of Engineering Mechanics, ASCE, Vol. 123, No. 3, 1997. pp. 230-238 https://doi.org/10.1061/(ASCE)0733-9399(1997)123:3(230)
  10. Dyke, S. J., Spencer, B. F., Sain, M. K., and Carlson, J. D., 'Modeling and control of magnetorheological dampers for seismic response reduction,' Smart Materials and Structures, Vol. 5, 1996, pp. 565-575 https://doi.org/10.1088/0964-1726/5/5/006
  11. Schurter, K. C. and Roschke, P. N., 'Fuzzy modeling of a magnetorheological damper using ANFIS,' Proceedings of the 9th IEEE International Conference of Fuzzy System, San Antonio, Texas, 2000
  12. Dyke, S. J., Spencer, B. F., Sain, M. K., and Carlson, J. D., 'An experimental study of magnetorheological dampers for seismic hazard mitigation,' Proceedings of the 17th Structures Congress, New Orleans, LA, 1999, pp. 1358-1362
  13. 조상원, 이헌재, 김춘호, 이인원, 'MR댐퍼 기반의 스마트 수동제어 시스템', 한국지진공학회 춘계학술발표회 논문집, 한국지진공학회, 2004, pp. 453-461
  14. 이호근, 민경원, 성금길, 김대곤, '구조물 진동의 반능동 제어를 위한 MR 댐퍼 설계', 한국지진공학회 춘계학술발표회 논문집, 한국지진공학회, 2004, pp. 469-476
  15. Constantinou, M. C. and Soong, T. T., Passive and active structural vibration control in civil engineering, Springer-Verlag, New York, 1994, pp. 114-117
  16. Karnopp, D., Crosby, M. J., and Harwood, R. A., 'Vibration control using semi-active force generators,' J. Engrg. for Industry, Vol. 96, No. 2, 1974, pp. 619-626