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Model reduction techniques for high-rise buildings and its reduced-order controller with an improved BT method

机译:具有改进的BT方法的高层建筑及其依次控制控制器的模型减少技术

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摘要

An AMD control system is usually built based on the original model of a target building. As a result, the fact leads a large calculation workload exists. Therefore, the orders of a structural model should be reduced appropriately. Among various model-reduction methods, a suitable reduced-order model is important to high-rise buildings. Meanwhile, a partial structural information is discarded directly in the model-reduction process, which leads to the accuracy reduction of its controller design. In this paper, an optimal technique is selected through comparing several common model-reduction methods. Then, considering the dynamic characteristics of a high-rise building, an improved balanced truncation (BT) method is proposed for establishing its reduced-order model. The abandoned structural information, including natural frequencies, damping ratios and modal information of the original model, is reconsidered. Based on the improved reduced-order model, a new reduced-order controller is designed by a regional pole-placement method. A high-rise building with an AMD system is regarded as an example, in which the energy distribution, the control effects and the control parameters are used as the indexes to analyze the performance of the improved reduced-order controller. To verify its effectiveness, the proposed methodology is also applied to a four-storey experimental frame. The results demonstrate that the new controller has a stable control performance and a relatively short calculation time, which provides good potential for structural vibration control of high-rise buildings.
机译:AMD控制系统通常基于目标建筑的原始模型构建。结果,事实导致存在大的计算工作量。因此,应适当地减少结构模型的订单。在各种模型还原方法中,合适的减少阶型模型对高层建筑很重要。同时,部分结构信息直接丢弃在模型还原过程中,这导致其控制器设计的精度降低。在本文中,通过比较几种常见的型号还原方法来选择最佳技术。然后,考虑到高层建筑的动态特性,提出了一种改进的平衡截断(BT)方法来建立其阶阶模型。被遗弃的结构信息,包括原始模型的自然频率,阻尼比和模态信息,是重新考虑的。基于改进的阶数模型,通过区域极点置入方法设计了一种新的减少控制器。具有AMD系统的高层建筑物被认为是一个例子,其中能量分布,控制效果和控制参数用作分析改进的缩小控制器的性能的索引。为了验证其有效性,所提出的方法也适用于四层实验框架。结果表明,新控制器具有稳定的控制性能和相对短的计算时间,这提供了高层建筑结构振动控制的良好潜力。

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