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- W2316991635 abstract "This study investigates the stability and accuracy of a new substructure shake table test method that utilizes controlled masses. The method allows for an earthquake simulation of large and complex structural systems by decomposing the specimen into experimental and computational substructures. The dynamic interaction of the computational substructure is incorporated into the experimental substructure through the inertial force of a controlled mass. Acceleration measurements of the experimental system are used as input to the computational system. Because the mass is controlled by either acceleration or displacement commands, the method does not require the use of dynamic force control techniques that are needed in previously proposed methods. To validate the feasibility of the method a computational simulation is performed using detailed models of the system components. This work serves as an analytical validation of the substructure shake table test method and as preparation for the experimental implementation that is ongoing at Johns Hopkins University. This paper presents theoretical formulation, details of the simulation models, computational simulation results, and suggestions for the experimental study." @default.
- W2316991635 created "2016-06-24" @default.
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- W2316991635 date "2012-03-29" @default.
- W2316991635 modified "2023-10-17" @default.
- W2316991635 title "Real-Time Substructure Shake Table Tests Incorporating Interface Boundary Force by an Inertial Mass" @default.
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- W2316991635 doi "https://doi.org/10.1061/9780784412367.192" @default.
- W2316991635 hasPublicationYear "2012" @default.
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