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Semi-active control of dynamically excited structures using active interaction control.

机译:使用主动交互控制的动态激励结构的半主动控制。

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摘要

This thesis presents a family of semi-active control algorithms termed Active Interaction Control (AIC) used for response control of dynamically excited structures. The AIC approach has been developed as a semi-active means of protecting building structures against large earthquakes. The AIC algorithms include the Active Interface Damping (AID), Optimal Connection Strategy (OCS), and newly developed Tuned Interaction Damping (TID) algorithms. All of the AIC algorithms are founded upon the same basic instantaneous optimal control strategy that involves minimization of an energy-based performance index at every time instant.; A typical AIC system consists of a primary structure targeted for vibration control, a number of auxiliary structures, and interaction elements that connect the auxiliary structures to the primary structure. Through actively modulating the operating states of the interaction elements according to pre-specified control logic, control forces favorable to the control strategy are reactively developed within the interaction elements and the vibration of the primary structure is thus restrained. The merits of this structural control approach include both high control performance and minimal external power requirement for the operation of the control devices. The latter is important during large earthquakes when power blackouts are likely to occur. Most encouraging is that with currently available technology this control approach can be readily implemented in real structures.; In this thesis, the cause for an over-attachment problem in the original OCS system is clarified and corresponding counter-measures are proposed. The OCS algorithm is reformulated within an energy framework and therefore all of the AIC control algorithms are unified under the same instantaneous optimal control strategy.; To implement the AIC algorithms into multi-degree-of-freedom systems, two approaches are formulated in this thesis: the Modal Control and Nodal Control approaches. The Modal Control approach directs the control effort to certain dominant response modes, and the Nodal Control approach directly controls the response quantities in physical space. It is found that the Modal Control approach is more efficient than the Nodal Control approach. The effectiveness of the AIC control algorithms is verified through numerical simulation results for three-story, nine-story and twenty-story steel-framed buildings. The statistical behavior of the AIC system is evaluated based on a Monte Carlo simulation.
机译:本文提出了一种称为主动交互控制(AIC)的半主动控制算法,用于动态激励结构的响应控制。 AIC方法已被开发为保护建筑物结构免遭大地震的半主动手段。 AIC算法包括活动接口阻尼(AID),最佳连接策略(OCS)和新开发的调谐交互阻尼(TID)算法。所有的AIC算法都基于相同的基本瞬时最优控制策略,该策略涉及在每个时刻最小化基于能量的性能指标。典型的AIC系统由用于振动控制的主结构,许多辅助结构以及将辅助结构连接到主结构的交互元件组成。通过根据预定的控制逻辑主动地调节相互作用元件的工作状态,在相互作用元件内反作用地产生了有利于控制策略的控制力,从而抑制了主结构的振动。这种结构控制方法的优点包括高控制性能和控制设备操作所需的最小外部功率。后者在可能发生停电的大地震中很重要。最令人鼓舞的是,利用当前可用的技术,可以很容易地在实际结构中实施这种控制方法。本文阐明了原始OCS系统中过度连接问题的原因,并提出了相应的对策。 OCS算法在能量框架内重新制定,因此所有AIC控制算法都在同一瞬时最优控制策略下统一。为了将AIC算法实现到多自由度系统中,本文提出了两种方法:模态控制方法和节点控制方法。模态控制方法将控制工作定向到某些主导响应模式,节点控制方法直接控制物理空间中的响应量。发现模态控制方法比节点控制方法更有效。通过对三层,九层和二十层钢框架建筑的数值模拟结果,验证了AIC控制算法的有效性。基于蒙特卡洛模拟评估AIC系统的统计行为。

著录项

  • 作者

    Zhang, Yunfeng.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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