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首页> 外文期刊>Smart structures and systems >Velocity feedback for controlling vertical vibrations of pedestrian-bridge crossing. Practical guidelines
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Velocity feedback for controlling vertical vibrations of pedestrian-bridge crossing. Practical guidelines

机译:速度反馈,用于控制人行天桥的垂直振动。实用指南

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摘要

Active vibration control via inertial mass actuators has been shown as an effective tool to significantly reduce human-induced vertical vibrations, allowing structures to satisfy vibration serviceability limits. However, a lot of practical obstacles have to be solved before experimental implementations. This has motivated simple control techniques, such as direct velocity feedback control (DVFC), which is implemented in practice by integrating the signal of an accelerometer with a band-pass filter working as a lossy integrator. This work provides practical guidelines for the tuning of DVFC considering the damping performance, inertial mass actuator limitations, such as stroke and force saturation, as well as the stability margins of the closed-loop system. Experimental results on a full scale steel-concrete composite structure (behaves similar to a footbridge) with adjustable span are reported to illustrate the main conclusions of this work.
机译:通过惯性质量执行器进行主动振动控制已被证明是有效减少人为引起的垂直振动的有效工具,从而使结构满足振动使用寿命的要求。但是,在实验实现之前必须解决许多实际障碍。这激发了简单的控制技术,例如直接速度反馈控制(DVFC),该技术实际上是通过将加速度计的信号与用作有损积分器的带通滤波器进行积分来实现的。这项工作考虑了阻尼性能,惯性质量执行器限制(例如行程和力饱和)以及闭环系统的稳定性裕度,为DVFC的调谐提供了实用指南。报道了可调节跨度的全尺寸钢-混凝土复合结构(类似于人行桥)的实验结果,以说明这项工作的主要结论。

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