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Semi-active control of walking-induced vibrations in bridges using adaptive tuned mass damper considering human-structure-interaction

机译:考虑人体结构 - 交互,使用自适应调谐质量阻尼器的桥梁在桥梁中的步行诱导振动的半主动控制

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摘要

Tuned mass dampers (TMDs) are used to control pedestrian induced vibrations of pedestrian bridges as traditional vibration control devices. A TMD can have a good control effect when it is tuned to the natural/vibrational frequency of the primary system. However, a traditional passive TMD is sensitive to the frequency deviation. Actual human-induced excitations can cover a wide frequency range and are stochastic virtually, which will cause a decrement in its control effect. The human-structure interaction (HSI) can also change the structural characteristic and lead to a mistuned TMD. To propose a more robust and effective TMD in solving the serviceability problem, a semi-active independent variable mass TMD (SAIVM-TMD) is introduced in this study. Wavelet transform (WT) is used to identify the structural instantaneous frequency, then, the mass of SAIVM-TMD is adjusted according to the WT - based control algorithm by actuating devices in real time. To highlight the control effect of SAIVM-TMD, a simply supported pedestrian bridge is carried out as a case study. The bridge is simplified to a Euler–Bernoulli beam according to an in-situ test and model analysis. Then, its dynamic responses under different controllers are analyzed and compared under single pedestrian periodic and stochastic walking-induced excitations. HSI is considered and a pedestrian is modulated as a moving spring-mass-damper (SMD) model. Then, a case under crowd-induced stochastic excitation is proposed. A passive TMD optimized for a pedestrian bridge under moving loads is used for comparison. Results show that SAIVM-TMD always has the best performance because it can adapt to the structural vibrational frequency changes efficiently and retune.
机译:调谐质量阻尼器(TMDS)用于控制行人桥梁的行人诱导振动作为传统振动控制装置。当TMD调谐到主要系统的自然/振动频率时,TMD可以具有良好的控制效果。然而,传统的被动TMD对频率偏差敏感。实际的人类诱导的激发可以覆盖宽频率范围,并且几乎是随机的,这将导致其对照效果递减。人结构相互作用(HSI)也可以改变结构特征并导致迷失的TMD。为了提出更强大和有效的TMD在解决可维护性问题时,本研究中介绍了半主动独立的变量质量TMD(SAIVM-TMD)。小波变换(WT)用于识别结构瞬时频率,然后,根据基于WT基的控制算法,实时启动器件来调整SAIVM-TMD的质量。为了突出SAIVM-TMD的控制效果,作为案例研究进行了简单的支持行人桥。根据原位测试和模型分析,将桥梁简化为Euler-Bernoulli光束。然后,在单一行人周期性和随机步行诱导的激发下分析并比较其在不同控制器下的动态响应。考虑了HSI,并且作为移动弹簧质量阻尼器(SMD)模型调制行人。然后,提出了一种在人群诱导的随机激发下的情况。在移动负载下针对行人桥进行优化的被动TMD用于比较。结果表明,SAIVM-TMD始终具有最佳性能,因为它可以有效地适应结构振动频率,并重新调整。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|112743.1-112743.15|共15页
  • 作者单位

    Department of Disaster Mitigation for Structures Tongji University Shanghai 200092 China|Department of Civil and Environmental Engineering Rice University Houston TX 77005 USA;

    Department of Civil and Environmental Engineering Rice University Houston TX 77005 USA|Department of Mechanical Engineering and Materials Science Rice University Houston TX 77005 USA;

    Department of Disaster Mitigation for Structures Tongji University Shanghai 200092 China;

    Department of Disaster Mitigation for Structures Tongji University Shanghai 200092 China|State Key Laboratory of Disaster Reduction in Civil Engineering Tongji University Shanghai 200092 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adaptive control; Human-structure interaction; Serviceability problem; Stochastic walking-induced vibrations; Tuned mass damper; Variable mass;

    机译:自适应控制;人体结构相互作用;可靠性问题;随机行走引起的振动;调谐质量阻尼器;可变质量;

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