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Active vibration control of frame structures with smart structures using piezoelectric actuators (Vibration control by control of bending moments of columns)

机译:使用压电致动器对具有智能结构的框架结构进行主动振动控制(通过控制柱的弯矩来控制振动)

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摘要

A smart structure was tested for active vibration control of frame structures in which the bending moment of the columns was controlled by stack-type piezoelectric actuators integrated into the columns. Excitation tests were carried out for a model of a four-storey building 3.7 m in height and 2000 kg in total weight in which thirty-two piezoelectric actuators 25 mm x 25 mm x 36 mm(H) were used for bending moment control. The actuators were installed in two ways: in one case eight actuators were attached to each column of the first storey, and in the other case four actuators were attached to each column of the first and second storeys. Two control strategies, a model-matching method and the H-infinity control theory, were examined for the smart structure. The tests showed that the smart structure could effectively reduce the responses of the building model, and all combinations of actuator installation method and the control strategy yielded almost the same performance.
机译:测试了一种智能结构,用于框架结构的主动振动控制,在该结构中,柱的弯矩由集成到柱中的堆叠式压电致动器控制。对一个高3.7 m,总重2000 kg的四层建筑的模型进行了励磁测试,其中使用了32个25 mm x 25 mm x 36 mm(H)的压电致动器来控制弯矩。致动器以两种方式安装:在一种情况下,八个致动器连接到第一层的每一列,而在另一种情况下,四个致动器连接到第一层和第二层的每一列。对于智能结构,研究了两种控制策略:模型匹配方法和H-无穷大控制理论。测试表明,智能结构可以有效地减少建筑模型的响应,并且执行器安装方法和控制策略的所有组合产生的性能几乎相同。

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