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Mixed Force and Displacement Control for Testing Base-Isolated Bearings in Real-Time Hybrid Simulation
This paper presents a robust mixed force and displacement control strategy for testing of base isolation bearings in real-time hybrid simulation. The mixed-mode control is a critical experimental technique to impose accurate loading conditions on the base isolation bearings. The proposed mixed-mode control strategy consists of loop-shaping and proportional-integral-differential controllers. Following experimental validation, the mixed-mode control was demonstrated through a series of real-time hybrid simulation. The experimental results showed that the developed mixed-mode control enables accurate control of dynamic vertical force on the base isolation bearings during real-time hybrid simulation.
Mixed Force and Displacement Control for Testing Base-Isolated Bearings in Real-Time Hybrid Simulation
This paper presents a robust mixed force and displacement control strategy for testing of base isolation bearings in real-time hybrid simulation. The mixed-mode control is a critical experimental technique to impose accurate loading conditions on the base isolation bearings. The proposed mixed-mode control strategy consists of loop-shaping and proportional-integral-differential controllers. Following experimental validation, the mixed-mode control was demonstrated through a series of real-time hybrid simulation. The experimental results showed that the developed mixed-mode control enables accurate control of dynamic vertical force on the base isolation bearings during real-time hybrid simulation.
Mixed Force and Displacement Control for Testing Base-Isolated Bearings in Real-Time Hybrid Simulation
Nakata, Narutoshi (Autor:in) / Erb, Richard (Autor:in) / Stehman, Matthew (Autor:in)
Journal of Earthquake Engineering ; 23 ; 1055-1071
03.07.2019
17 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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