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首页> 外文期刊>Journal of structural engineering >Quantitative Comparison Of Optimization Approaches For The Design Of Supplemental Damping In Earthquake Engineering Practice
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Quantitative Comparison Of Optimization Approaches For The Design Of Supplemental Damping In Earthquake Engineering Practice

机译:地震工程实践中附加阻尼设计优化方法的定量比较

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摘要

One approach to the optimal design of passive controllers in linear structures for earthquake engineering applications makes use of active control tools. Usually, when this approach is adopted, the actual objective function is a time integral of a functional of given mathematical structure of response quantities and control forces. This approach has been used for the design of added dampers and is appealing due to its simplicity and the minor computational effort it requires. In adapting the active control approach to passive control, it has often been assumed that an objective function of this kind is suitable. It has been a widespread opinion in the passive control community, however, that minimization of such a smeared quantity that has a predetermined mathematical structure cannot lead to truly optimal added damper schemes. This paper formally addresses this issue and shows that what has been suspected for some time is indeed the case. The optimal location and size of each of the added dampers and, thus, the total added damping for given structures are attained here by directly solving the practical optimization problem as a reference. For the same total added damping, an active control approach is then used to find its own optimal location and size of each of the added dampers. A time history analysis is finally carried out for an a priori chosen ensemble of earthquakes to yield the envelope of maximal interstory drifts. It is shown that the active control approach is not satisfactory, in the practical sense, since it leads to much larger maximal interstory drifts.
机译:一种用于地震工程应用的线性结构中无源控制器的最佳设计的方法是利用有源控制工具。通常,当采用这种方法时,实际目标函数是响应量和控制力的给定数学结构的函数的时间积分。这种方法已用于设计附加阻尼器,并且由于其简单性和所需的少量计算工作而吸引人。在使主动控制方法适应于被动控制时,经常假设这种目标函数是合适的。然而,在被动控制领域中已经有广泛的意见,即具有预定数学结构的这种拖尾量的最小化不能导致真正最佳的附加阻尼器方案。本文正式解决了这个问题,并表明确实存在一段时间的怀疑。通过直接解决实际的优化问题作为参考,可以在此处获得每个已添加阻尼器的最佳位置和大小,从而获得给定结构的总添加阻尼。对于相同的总附加阻尼,然后使用主动控制方法来找到每个附加阻尼器自身的最佳位置和尺寸。最后,对先验选择的地震集合进行时程分析,以得出最大的层间漂移包络。从实际意义上看,主动控制方法并不令人满意,因为它会导致更大的最大层间位移。

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