Nonlinear signal‐based control for shake table experiments with sliding masses (English)
- New search for: Enokida, Ryuta
- New search for: Ikago, Kohju
- New search for: Guo, Jia
- New search for: Kajiwara, Koichi
- New search for: Enokida, Ryuta
- New search for: Ikago, Kohju
- New search for: Guo, Jia
- New search for: Kajiwara, Koichi
In:
Earthquake Engineering & Structural Dynamics
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52
, 6
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1908-1931
;
2023
- Article (Journal) / Electronic Resource
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Title:Nonlinear signal‐based control for shake table experiments with sliding masses
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Contributors:Enokida, Ryuta ( author ) / Ikago, Kohju ( author ) / Guo, Jia ( author ) / Kajiwara, Koichi ( author )
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Published in:Earthquake Engineering & Structural Dynamics ; 52, 6 ; 1908-1931
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Publisher:
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Publication date:2023-05-01
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Size:24 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 52, Issue 6
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 1631
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Issue information| 2023
- 1635
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Seismic performance of gravity retaining wallsYünkül, Kaan / Gürbüz, Ayhan et al. | 2023
- 1658
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Seismic response of slender MDOF structures with self‐centering base shear and moment mechanismsZhong, Chiyun / Christopoulos, Constantin et al. | 2023
- 1678
-
Wall‐diaphragm interactions in seismic response of building systems I: Parametric models and elastic responseFischer, Astrid W. / Schafer, Benjamin W. et al. | 2023
- 1704
-
Effect of ground motion processing and filtering on the response of rocking structuresElmorsy, Medhat / Vassiliou, Michalis F. et al. | 2023
- 1722
-
Intensity measures as interfacing variables versus response proxies: The case of rigid rocking blocksLachanas, Christos G. / Vamvatsikos, Dimitrios / Dimitrakopoulos, Elias G. et al. | 2023
- 1740
-
A macro‐element with bidirectional interaction for seismic analysis of unreinforced masonry wallsKesavan, Prabakaran / Menon, Arun et al. | 2023
- 1762
-
Investigation of rocking mechanism of shallow foundations on sand via PIV techniqueMoradi, Mohamadali / Hosseini, Seyed Majdeddin Mir Mohammad / Khezri, Ali et al. | 2023
- 1785
-
Regional‐scale seismic fragility, loss, and resilience assessment using physics‐based simulated ground motions: An application to IstanbulZhang, Wenyang / Chen, Peng‐Yu / Crempien, Jorge G. F. / Kurtulus, Asli / Arduino, Pedro / Taciroglu, Ertugrul et al. | 2023
- 1805
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Limitation of base isolation in protecting freestanding contents in buildingsWang, Feijian / Huang, Yuli / Qu, Zhe et al. | 2023
- 1823
-
Seismic damage evaluation of unanchored nonstructural components under combined effects of horizontal and vertical near‐fault ground motionsWang, Jianze / Chen, Weiwei / Dai, Kaoshan / Li, Tao / Tesfamariam, Solomon / Lu, Yang et al. | 2023
- 1844
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Drift‐ and energy‐based seismic performance assessment of retrofitted wood frame shear wall buildings: Shake table testsVentura, Carlos E. / Motamedi, Mehrtash / Pan, Yuxin / Tesfamariam, Solomon / Xiong, Haibei et al. | 2023
- 1861
-
Effect of a symmetric V‐shaped canyon on the seismic response of an adjacent building under oblique incident SH wavesZhang, Ning / Lu, Haijun / Gao, Yufeng / Dai, Denghui / Zhang, Yu / Pak, Ronald Y.S. et al. | 2023
- 1884
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Seismic displacement of earth slopes incorporating co‐seismic accumulation of dynamic pore water pressureJi, Jian / Zhang, Wenliang / Zhang, Tong / Song, Jian et al. | 2023
- 1908
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Nonlinear signal‐based control for shake table experiments with sliding massesEnokida, Ryuta / Ikago, Kohju / Guo, Jia / Kajiwara, Koichi et al. | 2023
- 1932
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Shaking table tests of a full‐scale 10‐story reinforced‐concrete building (2015). Phase II: Seismic resisting systemKang, Jae‐Do / Kajiwara, Koichi / Tosauchi, Yusuke / Sato, Eiji / Inoue, Takahito / Kabeyasawa, Toshimi / Shiohara, Hitoshi / Nagae, Takuya / Kabeyasawa, Toshikazu / Fukuyama, Hiroshi et al. | 2023
- 1956
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Erratum: Amplitude scaling of ground motions as a potential source of bias: Large scale investigations on structural drifts| 2023