首页> 外文会议>1997 Workshop on High Performance Electron Devices for Microwave and Optoelectronic Applications, 1997. EDMO, 1997 >Adaptive feedforward control algorithms for active vibration control of tall structures
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Adaptive feedforward control algorithms for active vibration control of tall structures

机译:高层结构主动振动控制的自适应前馈控制算法

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This paper investigates a two degree of freedom control system which enables active vibration suppression for a tall structure subjected to seismic excitation. The control system is composed of a state feedback or robust output feedback controller and an adaptive feedforward controller. The latter can make use of acceleration rates of remote ground motions which are detected by remote sensors and sent to the controller through wireless communications, even if there exist uncertainties in seismic propagation dynamics and structure model. A robust adaptive algorithm with assured stability is presented to improve the vibration control performance by using a prior bound of uncertain term. In numerical simulations, it is shown that there exists an optimal sensor location that can minimize the maximum movement of a mass of dynamic absorber.
机译:本文研究了一种两自由度控制系统,该系统可以对受到地震激励的高层结构进行主动振动抑制。控制系统由状态反馈或鲁棒输出反馈控制器和自适应前馈控制器组成。即使地震传播动力学和结构模型存在不确定性,后者也可以利用由远程传感器检测到并通过无线通信发送到控制器的远程地面运动的加速度。提出了一种具有保证稳定性的鲁棒自适应算法,通过使用不确定项的先验边界来提高振动控制性能。在数值模拟中,表明存在一个最佳的传感器位置,该位置可以最大程度地减少动态吸收器块的最大运动。

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