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H_∞ control in the frequency domain for a semi-active floor isolation system

机译:半主动地板隔振系统的频域H_∞控制

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摘要

A floor isolation system installed in a single floor or room in a fixed base structure is designed to protect equipment. With this configuration, the input motions to the floor isolation from the ground motions are filtered by the structure, leaving the majority of the frequency content of the input motion lower than the predominant frequency of the structure. The floor isolation system should minimize the acceleration to protect equipment; however, displacement must also be limited to save floor space, especially with long period motion. Semi-active control with an H_∞ control was adopted for the floor isolation system and a new input shaping filter was developed to account for the input motion characteristics and enhance the effectiveness of the H_∞ control. A series of shake table tests for a semi-active floor isolation system using rolling pendulum isolators and a magnetic-rheological damper were performed to validate the H_∞ control. Passive control using an oil damper was also tested for comparison. The test results show that the H_∞ control effectively reduced acceleration for short period motions with frequencies close to the predominant frequency of the structure, as well as effectively reduced displacement for long period motions with frequencies close to the natural frequency of the floor isolation system. The H_∞ control algorithm proved to be more advantageous than passive control because of its capacity to adjust control strategies according to the different motion frequency characteristics.
机译:安装在固定基础结构的单个地板或房间中的地板隔离系统旨在保护设备。通过这种配置,与地面运动隔离的地板运动的输入运动会被该结构过滤掉,而大部分输入运动的频率成分却低于该结构的主要频率。地面隔离系统应将加速度减至最小,以保护设备;但是,还必须限制位移以节省地面空间,尤其是长时间运动时。地板隔离系统采用具有H_∞控制的半主动控制,并开发了一种新的输入整形滤波器,以考虑输入运动特性并增强H_∞控制的有效性。进行了一系列针对半主动地板隔离系统的振动台测试,该系统使用滚动摆隔离器和磁流变阻尼器,以验证H_∞控制。还测试了使用油阻尼器的被动控制以进行比较。测试结果表明,H_∞控制可有效降低频率接近结构主要频率的短时运动的加速度,并有效降低频率接近地板隔离系统固有频率的长时运动的位移。 H_∞控制算法被证明比被动控制更具优势,因为它具有根据不同的运动频率特性调整控制策略的能力。

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