EXPERIMENTAL VERIFICATION OF BOUNDED-FORCE CONTROL METHOD

An efficient and simple non‐linear active control method called Bounded‐Force Control (BFC) method has been developed. The theoretical development and application examples of the BFC method has been presented in several publications where it was shown that the BFC is more efficient than the Linear Q...

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Veröffentlicht in:Earthquake engineering & structural dynamics 1996-02, Vol.25 (2), p.179-193
Hauptverfasser: INDRAWAN, B., KOBORI, T., SAKAMOTO, M., KOSHIKA, N., OHRUI, S.
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container_end_page 193
container_issue 2
container_start_page 179
container_title Earthquake engineering & structural dynamics
container_volume 25
creator INDRAWAN, B.
KOBORI, T.
SAKAMOTO, M.
KOSHIKA, N.
OHRUI, S.
description An efficient and simple non‐linear active control method called Bounded‐Force Control (BFC) method has been developed. The theoretical development and application examples of the BFC method has been presented in several publications where it was shown that the BFC is more efficient than the Linear Quadratic Regulator (LQR) method in terms of maximum control force and power requirements when applied to an Active Tuned Mass Damper (ATMD) system. Following a brief review of the fundamental concept of the BFC and a discussion of its main advantages, the results of an experimental investigation using a three‐storey shear building model excited by a shaking table and controlled by an electromagnetic linear motor are presented. The experimental results were in perfect agreement with the analytical results, thus confirming the validity of the proposed BFC algorithm.
doi_str_mv 10.1002/(SICI)1096-9845(199602)25:2<179::AID-EQE545>3.0.CO;2-N
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subjects active tuned mass damper (ATMD)
Applied sciences
bounded-force control
Buildings. Public works
Exact sciences and technology
experimental results
linear motor
shear building model
Stresses. Safety
Structural analysis. Stresses
title EXPERIMENTAL VERIFICATION OF BOUNDED-FORCE CONTROL METHOD
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