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Microvibration control platform for high technology facilities subject to traffic-induced ground motion

机译:受交通诱导地面运动影响的高科技设施的微振动控制平台

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This paper investigates the possibility of using a microvibration control platform to isolate a batch of high tech equipment from the floor of a building subject to nearby traffic-induced ground motion. The governing equation of motion of the coupled platform-building system is derived in the absolute coordinate to facilitate the feedback control and performance evaluation of the platform based on the BBN vibration criteria with the absolute velocity being targeted. A hybrid control system composed of passive mounts and active hydraulic actuators with a sub-optimal control algorithm is designed to actively control the platform. Hydraulic actuator dynamics are also considered in the modelling of the control system to avoid possible instability of the platform. The performance of actively controlled platform is assessed through comparisons with the cases of the building without control, the building with passively controlled platform, and the building with passive base isolator. Simulation results indicate that passively controlled platform and passive base isolator can be effective in reducing microvibration of high tech equipment if their parameters are properly selected. The actively controlled platform is superior to the passively controlled platform and passive base isolator because of its high performance and robustness.
机译:本文研究了使用微振动控制平台将一批高科技设备与建筑物地面隔离的可能性,该建筑物受附近交通诱导的地面运动的影响。在绝对坐标中导出了耦合平台构建系统的运动控制方程,以基于BBN振动标准为平台,以绝对速度为目标,方便了平台的反馈控制和性能评估。设计了一种由被动支座和主动液压执行器组成的混合控制系统,并采用次优控制算法来主动控制平台。在控制系统的建模中还考虑了液压执行器动力学特性,以避免平台可能出现的不稳定性。主动控制平台的性能通过与无控制建筑物,具有被动控制平台的建筑物以及具有被动基础隔离器的建筑物的情况进行比较来评估。仿真结果表明,如果选择合适的参数,被动控制平台和被动隔振器可以有效降低高科技设备的微振动。主动控制平台由于其高性能和鲁棒性而优于被动控制平台和被动基础隔离器。

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