@inproceedings{a221613c5c834d7f8c048ae8c577c110,
title = "Active control of along-wind response of a tall building with AMD using LQR controller",
abstract = "Most of modern tall buildings using lighter construction materials are more flexible so could be excessive wind-induced vibrations resulting in occupant discomfort and structural unsafety. The optimal control technique for reducing along-wind vibration of a tall building based on the linear quadratic regulator (LQR) is presented in this work. Actively controlled reduced along-wind vibration response is obtained from the tall building installed in an active mass damper (AMD) with a LQR controller. Fluctuating along-wind load is generated using numerical simulation method, which can formulate a stationary Gaussian white noise process. Simulating wind load in the time domain using known spectra data of fluctuating along-wind load is particularly useful for estimation of wind-induced vibration which is more or less narrow banded process such as a along-wind response of a tall building. In this work, fluctuating along-wind load acting on a tall building treated as a stationary Gaussian white noise process is simulated numerically using the along-wind load spectra proposed by G. Solari in1992. And using this simulated along-wind load estimated the reduced along-wind vibration response of a tall building installed in an AMD with a LQR controller.",
keywords = "Along-wind response, AMD, LQR, Numerical simulation",
author = "Kim, \{Young Moon\} and You, \{Ki Pyo\} and You, \{Jang Youl\}",
year = "2014",
doi = "10.4028/www.scientific.net/AMM.490-491.1063",
language = "English",
isbn = "9783038350019",
series = "Applied Mechanics and Materials",
pages = "1063--1067",
booktitle = "Mechanical Design and Power Engineering",
note = "2013 2nd International Conference on Mechanical Design and Power Engineering, ICMDPE 2013 ; Conference date: 29-11-2013 Through 30-11-2013",
}