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Semi-active phase control of tuned mass dampers for translational and torsional vibration mitigation of structures

机译:调谐质量阻尼器的半主动相位控制,用于结构的平移和扭转振动缓解

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摘要

The present study aims at demonstrating the feasibility of semi-active phase control of tuned mass dampers (TMDs) implemented in structures for simultaneous reduction in translational and torsional vibration. The semi-active phase control, which employs a semi-active friction device, applies the friction force at certain situations to adjust the TMD phase back to the 90 degrees phase lag. Thus, the phase control tuned mass dampers (PC-TMDs) can develop the best power flow to reduce the structural vibration. In this paper, a complete phase control algorithm is proposed by considering a full range of phase differences. The proposed PC-TMDs not only improve the control performance but also prevent the TMD power from flowing back to the main structure. Furthermore, conventional suspension-type TMDs have only one tuning frequency and exhibit a potential off-tuning issue, lacking an ability to simultaneously suppress the structural translational and torsional vibration. The feasibility of application of the PC-TMDs is verified through various numerical simulations, and a practical mechanism for the PC-TMDs is introduced. The simulation results reveal the robustness of the PC-TMDs, particularly when the PC-TMDs are de-tuned to the structure. Therefore, the PC-TMDs outperform the conventional TMDs in terms of suppressing the structural responses in all the translational and torsional directions.
机译:本研究旨在证明在结构中实施的同时调节平移和扭转振动的调谐质量阻尼器(TMD)的半主动相位控制的可行性。采用半主动摩擦装置的半主动相位控制在某些情况下施加摩擦力以将TMD相位调整回90度相位滞后。因此,相位控制调谐质量阻尼器(PC-TMD)可以产生最佳的功率流,以减少结构振动。在本文中,通过考虑整个范围的相位差,提出了一种完整的相位控制算法。所提出的PC-TMD不仅改善了控制性能,而且还防止了TMD功率流回主体结构。此外,传统的悬架式TMD仅具有一个调谐频率,并且存在潜在的失谐问题,缺乏同时抑制结构平移和扭转振动的能力。通过各种数值模拟验证了PC-TMD的应用可行性,并介绍了PC-TMD的实用机制。仿真结果显示了PC-TMD的鲁棒性,特别是当PC-TMD失调至结构时。因此,在抑制所有平移和扭转方向上的结构响应方面,PC-TMD优于传统的TMD。

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