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Topics in Dynamics of Civil Structures, Volume 4: by C. Rainieri, G. Fabbrocino (auth.), Fikret Necati Catbas,

By C. Rainieri, G. Fabbrocino (auth.), Fikret Necati Catbas, Shamim Pakzad, Vitomir Racic, Aleksandar Pavic, Paul Reynolds (eds.)

Topics in Dynamics of Civil buildings, quantity four: court cases of the 31st IMAC, A convention and Exposition on Structural Dynamics, 2013, the fourth quantity of 7 from the convention, brings jointly contributions to this significant quarter of study and engineering. the gathering offers early findings and case reports on primary and utilized elements of Structural Dynamics, together with papers on:

Modal Parameter identity for Civil Structures

Vibration keep an eye on of Civil Structures

Cable Dynamics

Damage Detection types for Civil Structures

Data-Driven wellbeing and fitness tracking of constructions & Infrastructure

Experimental options for Civil Structures

Human-induced Vibrations of Civil Structures

Structural Modeling for Civil Structures

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Extra info for Topics in Dynamics of Civil Structures, Volume 4: Proceedings of the 31st IMAC, A Conference on Structural Dynamics, 2013

Example text

To overcome the limitations of visual inspections, many researchers have turned their attention to structural health monitoring (SHM). SHM includes automated and data-driven techniques that use measurements of the building response to determine if damage has occurred. Within the class of SHM techniques, several researchers have turned to substructure identification as a way to detect common forms of structural damage. Substructure identification works by identifying a reduced order model of a portion of the structure and detecting damage through stiffness changes.

J Intell Mater Syst Struct 13(7–8):415–419 12. Iemura H, Pradono MH (2009) Advances in the development of pseudo-negative-stiffness dampers for seismic response control. Struct Contr Health Monit 16(7–8):784–799 13. Scruggs JT, Taflanidis AA, Iwan WD (2007) Non-linear stochastic controllers for semiactive and regenerative systems with guaranteed quadratic performance bounds Part 1: state feedback control. Struct Contr Health Monit 14(8):1101–1120 14. Scruggs JT, Taflanidis AA, Iwan WD (2007) Non-linear stochastic controllers for semiactive and regenerative systems with guaranteed quadratic performance bounds Part 2: output feedback control.

Ramallo JC, Johnson EA, Spencer BF Jr (2002) “Smart” base isolation systems. J Eng Mech 128(10):1088–1099 18. Qin SJ, Badgwell TA (2003) A survey of industrial model predictive control technology. Contr Eng Pract 11(7):733–764 19. Mei G, Kareem A, Kantor JC (2001) Real-time model predictive control of structures under earthquakes. Earthquake Eng Struct Dynam 30(7):995–1019 20. Mei G, Kareem A, Kantor JC (2002) Model predictive control of structures under earthquakes using acceleration feedback.

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