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首页> 外文期刊>International Journal of Solids and Structures >Microvibration control of coupled high tech equipment-building systems in vertical direction
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Microvibration control of coupled high tech equipment-building systems in vertical direction

机译:垂直方向耦合高科技设备制造系统的微振动控制

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Vertical ground motion induced by a moving train is one of the major sources of environmental loads that affect the normal operation of sensitive equipment installed in a high tech building nearby the railway. This paper investigates the microvibration level of a high tech building subject to nearby train-induced vertical ground motion and its mitigation using a hybrid control platform for sensitive equipment. The hybrid platform is an elastic body mounted on the building floor through a series of passive mounts and controlled by hydraulic actuators with a sub-optimal control algorithm. The finite element model and the governing equations of motion of the coupled platform-building system are established in the absolute coordinate to facilitate the feedback control and performance evaluation of the platform. The time histories of vertical ground motion are generated from the ground motion spectra that are the functions of track, train, and soil parameters. Numerical simulation and parametric studies are conducted on a typical three-story high tech building. The results show that the use of hybrid control platform can effectively reduce vertical microvibration of a batch of high tech equipment to the level satisfying the most stringent microscale velocity requirement specified in the BBN criteria. The hybrid control platform is superior to the passive platform because of its higher performance and robustness. (c) 2006 Elsevier Ltd. All rights reserved.
机译:行驶中的火车引起的垂直地面运动是环境负荷的主要来源之一,环境负荷影响安装在铁路附近高科技建筑中的敏感设备的正常运行。本文研究了受附近火车引起的垂直地面运动影响的高科技建筑的微振动水平及其对敏感设备的混合控制平台的减振作用。混合平台是通过一系列被动安装座安装在建筑物地板上的弹性体,并由液压执行器以次优控制算法进行控制。在绝对坐标下建立了耦合平台构建系统的有限元模型和运动控制方程,以方便平台的反馈控制和性能评估。垂直地面运动的时间历史是根据地面运动谱生成的,而地面运动谱是轨道,火车和土壤参数的函数。在典型的三层高科技建筑物上进行了数值模拟和参数研究。结果表明,使用混合控制平台可以有效地将一批高科技设备的垂直微振动降低到满足BBN标准中规定的最严格的微尺度速度要求的水平。混合控制平台由于其更高的性能和鲁棒性而优于无源平台。 (c)2006 Elsevier Ltd.保留所有权利。

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