Buradasınız

YAPILARIN SİSMİK İZOLASYONUNDA KAYAN MODLU AKTİF KONTROL YÖNTEMİ

SLIDING-MODE ACTIVE CONTROL METHOD IN SEISMIC ISOLATION OF STRUCTURES

Journal Name:

Publication Year:

Keywords (Original Language):

Abstract (2. Language): 
In this theoretical study, sliding-mode control method which is one of the active control methods has been applied to suppress structural vibration of earthquake excited structure. The robustness of sliding mode control has been proved when parametric uncertainties, modeling inaccuracies and varying dynamic loads exist. For numerical application, 8- story shear building excited by dynamic loads has been considered. To obtain the response of the building under earthquake forces, the east-west acceleration component of 1992 Erzincan earthquake and the east-west acceleration component of Düzce record and the north-south acceleration component of Bolu record of 1999 Düzce earthquake have been used. The obtained results have been presented in graphical form and compared with each other.
Abstract (Original Language): 
Mevcut kuramsal çalışmada, deprem etkisi altındaki yapıların titreşimlerini azaltmak için aktif kontrol yöntemlerinden biri olan kayan modlu kontrol yöntemi uygulanmıştır. Bu yöntemin, değişen dinamik yükler, modelleme hatası ve parametrik belirsizliğin olduğu durumlardaki performansı ortaya konmuştur. Sayısal uygulama için dinamik etkiye maruz lineer sönümlü sekiz katlı bir bina göz önüne alınmıştır. Dinamik etki olarak, 1992 Erzincan depremi doğu-batı ivme bileşeni ile 1999 Düzce depreminin Düzce kaydı doğu-batı ivme bileşeni ve Bolu kaydı kuzey-güney ivme bileşeni kullanılmıştır. Elde edilen çözümler birbirleriyle karşılaştırılmış ve sonuçlar grafiksel olarak sunulmuştur.
45-56

REFERENCES

References: 

Adhikari R., Yamaguchi H. (1997): “Sliding Mode Control of Buildings with ATMD”,
Earthquake Engineering and Structural Dynamics, V. 26, p. 409-422.
Afet İşleri Genel Müdürlüğü, Deprem Araştırma Dairesi, İvme Kayıtları, www.deprem.gov.tr,
Ankara.
Matheu E. E. (1998): “Output – Feedback Sliding Mode Control with Generalized Sliding
Surface for Civil Structures under Eartquake Excitation”, Earthquake Engineering and
Structural Dynamics, V. 27, p. 259-283.
Singh M. P., Matheu E.E. (1997): “Active and Semi-Active Control of Structures under
Seismic Excitation”, Earthquake Engineering and Structural Dynamics, V. 26, p. 193-213.
Slotine F.F.E., Li W. (1991): “Applied Nonlinear Control”, Prentice Hall, New Jersey,
Soong T. T. (1998): Experimental Simulation of Degrading Structures through Active
Control. Earthquake Engineering and Structural Dynamics, V. 27, p. 143-154.
Soong T. T., Constantinou M.C. (1994): “Passive and Active Structural Vibration Control in
Civil Engineering, Springer”, Verlag, New York.
Soong T. T., Dargush G.F. (1997): “Passive Energy Dissipation Systems in Structural
Engineering”, John Wiley and Sons, New York.
Sture S. (1997): Structural Control: Past, Present and Future, Journal of Engineering
Mechanics. ASCE, Special Issue, V. 123, No: 9.
Utku Ş. (1998): “Theory of Adaptive Structures”, Incorporating Intelligence into Engineered
Products, Boca Raton, CRC Press, New York.
Yang J.N., Wu J.C., Agrawal A.K., Hsu S.Y. (1997): “Sliding Mode Control with
Compensator for Wind and Seismic Response Control”, Earthquake Engineering and
Structural Dynamics, V. 26, p. 1137-1156.
Zhao B., Lu X., Wu M., Mei Z. (2000): “Sliding-Mode Control of Buildings with Base
Isolation Hybrid Protective System”, Earthquake Engineering and Structural Dynamics, V.
29, p. 315-326.
Wu J. C. (1998): “Application of Sliding Mode Control to Benchmark Problem”, Earthquake
Engineering and Structural Dynamics, V. 27, p. 1247-1266.

Thank you for copying data from http://www.arastirmax.com