A Novel Iterative Linear Matrix Inequality Design Procedure for Passive Inter-Substructure Vibration Control
暂无分享,去创建一个
[1] T. T. Soong,et al. Supplemental energy dissipation: state-of-the-art and state-of-the- practice , 2002 .
[2] Iman Hajirasouliha,et al. Adaptive low computational cost optimisation method for performance-based seismic design of friction dampers , 2019, Engineering Structures.
[3] Dario De Domenico,et al. Adaptive isolation system combining low-friction sliding pendulum bearings and SMA-based gap dampers , 2020 .
[4] Yongbo Peng,et al. Performance evaluation of base‐isolated structures with sliding hydromagnetic bearings , 2018, Structural Control and Health Monitoring.
[5] Mohit Sharma,et al. A compliant tuned liquid damper for controlling seismic vibration of short period structures , 2019, Mechanical Systems and Signal Processing.
[6] Josep Rubió-Massegú,et al. Distributed passive actuation schemes for seismic protection of multibuilding systems , 2020 .
[7] Zi-Qiang Lang,et al. Nonlinear damping based semi-active building isolation system , 2018 .
[8] Andrew S. Whittaker,et al. Energy dissipation systems for seismic applications: Current practice and recent developments , 2008 .
[9] Takuji Kobori,et al. Actual seismic response controlled building with semi-active damper system , 1999 .
[10] Huai-Ning Wu,et al. New insight into the simultaneous policy update algorithms related to H∞ state feedback control , 2019, Inf. Sci..
[11] Hamid Reza Karimi,et al. Design of inerter-based multi-actuator systems for vibration control of adjacent structures , 2019, J. Frankl. Inst..
[12] Josep Rubió-Massegú,et al. Decentralized static output‐feedback H∞ controller design for buildings under seismic excitation , 2012 .
[13] Hamid Reza Karimi,et al. Optimal passive-damping design using a decentralized velocity-feedback H-Infinity approach , 2012 .
[14] J. Love,et al. Series-Type Pendulum Tuned Mass Damper-Tuned Sloshing Damper , 2020, Journal of Vibration and Acoustics.
[15] Yuri Ribakov,et al. Optimal viscous dampers gains for structures subjected to earthquakes , 2016 .
[16] Seyed Mehdi Zahrai,et al. Semi-active seismic control of an 11-DOF building model with TMD+MR damper using type-1 and -2 fuzzy algorithms , 2018 .
[17] D. De Domenico,et al. Soil-dependent optimum design of a new passive vibration control system combining seismic base isolation with tuned inerter damper , 2018 .
[18] Josep Rubió-Massegú,et al. Interstory-interbuilding actuation schemes for seismic protection of adjacent identical buildings , 2019 .
[19] Zongjing Li,et al. Proper configuration of metallic energy dissipation system in shear-type building structures subject to seismic excitation , 2019 .
[20] Lihai Zhang,et al. Detecting structural damage to bridge girders using radar interferometry and computational modelling , 2017 .
[21] Izuru Takewaki,et al. Design strategies of viscous dampers for seismic protection of building structures: A review , 2019, Soil Dynamics and Earthquake Engineering.
[22] Zongjing Li,et al. Optimal placement of metallic dampers for seismic upgrading of multistory buildings based on a cost‐effectiveness criterion using genetic algorithm , 2019, The Structural Design of Tall and Special Buildings.
[23] Ming-Hsiang Shih,et al. Structural Control Effect and Performance of Structure Under Control of Impulse Semi-active Mass Control Mechanism , 2020 .
[24] Edoardo Patelli,et al. Reliability-based optimal design of nonlinear viscous dampers for the seismic protection of structural systems , 2018, Bulletin of Earthquake Engineering.
[25] D. De Domenico,et al. Earthquake protection of structures with nonlinear viscous dampers optimized through an energy-based stochastic approach , 2019, Engineering Structures.
[26] Zheng Lu,et al. Performance-based optimal design of tuned impact damper for seismically excited nonlinear building , 2018 .
[27] Georgios Apostolakis,et al. Optimal Evolutionary Seismic Design of Three-Dimensional Multistory Structures with Damping Devices , 2020 .
[28] Vasant Matsagar,et al. Research developments in vibration control of structures using passive tuned mass dampers , 2017, Annu. Rev. Control..
[29] Hamid Reza Karimi,et al. Static output-feedback control under information structure constraints , 2013, Autom..
[30] Mohammad Ali Ghannad,et al. Optimum placement of supplementary viscous dampers for seismic rehabilitation of steel frames considering soil–structure interaction , 2019, The Structural Design of Tall and Special Buildings.
[31] Giuseppe Ricciardi,et al. Earthquake-resilient design of base isolated buildings with TMD at basement: Application to a case study , 2018, Soil Dynamics and Earthquake Engineering.
[32] Hamid Reza Karimi,et al. Static output-feedback controller design for vehicle suspensions: an effective two-step computational approach , 2014 .
[33] Tomaso Trombetti,et al. A “direct five-step procedure” for the preliminary seismic design of buildings with added viscous dampers , 2018, Engineering Structures.
[34] Hamid Reza Karimi,et al. Integrated Design of Hybrid Interstory-Interbuilding Multi-Actuation Schemes for Vibration Control of Adjacent Buildings under Seismic Excitations , 2017 .
[35] Oded Amir,et al. Towards realistic minimum-cost optimization of viscous fluid dampers for seismic retrofitting , 2016, Bulletin of Earthquake Engineering.
[36] Kohei Fujita,et al. Smart passive damper control for greater building earthquake resilience in sustainable cities , 2011 .
[37] Ercan Atam,et al. Friction Damper-Based Passive Vibration Control Assessment for Seismically-Excited Buildings Through Comparison With Active Control: A Case Study , 2019, IEEE Access.
[38] I. Takewaki,et al. Optimal Viscous Damper Placement for Elastic-Plastic MDOF Structures Under Critical Double Impulse , 2019, Front. Built Environ..
[39] Giuseppe Carlo Marano,et al. Optimal design and seismic performance of Multi‐Tuned Mass Damper Inerter (MTMDI) applied to adjacent high‐rise buildings , 2020, The Structural Design of Tall and Special Buildings.
[40] Ying Zhou,et al. An alternative practical design method for structures with viscoelastic dampers , 2018, Earthquake Engineering and Engineering Vibration.
[41] Anthony Blakeborough,et al. Comparing fluid viscous damper placement methods considering total-building seismic performance , 2018, Earthquake Engineering & Structural Dynamics.
[42] Anil K. Chopra,et al. Modeling viscous damping in nonlinear response history analysis of buildings for earthquake excitation , 2016 .
[43] Hong-Nan Li,et al. TLCD Parametric Optimization for the Vibration Control of Building Structures Based on Linear Matrix Inequality , 2014, J. Appl. Math..
[44] Nicos Makris,et al. Health monitoring of fluid dampers for vibration control of structures: experimental investigation , 2012 .
[45] Hamid Reza Karimi,et al. Feasibility issues in static output-feedback controller design with application to structural vibration control , 2014, J. Frankl. Inst..