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Acceleration Feedback-Based Active and Semi-Active Seismic Response Control of Rail-Counterweight Systems of Elevators

机译:基于加速反馈的电梯铁路配重系统的主动和半主动地震反应控制

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摘要

Based on the observations in the past earthquake events, the traction elevators in buildings are known to be vulnerable to earthquake induced ground motions. Among several components of an elevator, the counterweight being heaviest is also known to be more susceptible than others. The inertial effects of the counterweight can overstress the guide rails on which it moves. Here we investigate to use the well-known acceleration feedback-based active and semi-active control methods to reduce stresses in the rails. The only way a control action can be applied to a moving counterweight-rail system is through a mass damper placed in the plane of the counterweight. For this, a part of the counterweight mass can be configured as a mass damper attached to a small actuator for an active scheme or to a magneto-rheological damper for a semi-active scheme. A comprehensive numerical study is conducted to evaluate the effectiveness of the proposed configuration of control system. It is observed that the two control schemes are effective in reducing the stress response by about 20 to 25% and improve the system fragility over a good range of seismic intensities.
机译:基于过去发生地震事件的观察,已知建筑物中的牵引电梯容易受到地震诱导的地面运动。在电梯的几个部件中,还众所周知,最重的配重比其他部件更容易受到影响。配重的惯性效应可以过度地推动它移动的导轨。在这里,我们调查使用众所周知的加速反馈的主动和半主动控制方法来减少轨道中的应力。控制动作可以应用于移动配重导轨系统的唯一方法是通过放置在配重平面中的质量阻尼器。为此,配重质量的一部分可以被配置为附接到用于活动方案的小型致动器的质量阻尼器或用于半主动方案的磁流变阻尼器。进行了综合数值研究,以评估控制系统的建议配置的有效性。观察到,两种控制方案有效地将应力响应降低约20至25%,并在良好的地震强度范围内改善系统脆性。

著录项

  • 作者

    M.P. Singh;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 22:01:37

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