首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >HIGH PERFORMANCE STRUCTURAL VIBRATION CONTROL BY A PREVIEW OF THE FUTURE SEISMIC WAVEFORM GENERATED WITH A WAVE TRANSMISSION NETWORK AND AN AI-BASED ESTIMATION SYSTEM
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HIGH PERFORMANCE STRUCTURAL VIBRATION CONTROL BY A PREVIEW OF THE FUTURE SEISMIC WAVEFORM GENERATED WITH A WAVE TRANSMISSION NETWORK AND AN AI-BASED ESTIMATION SYSTEM

机译:通过波传输网络和基于AI的估计系统产生的未来地震波形预览的高性能结构振动控制

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We propose a new active vibration control strategy based on the future seismic waveform information obtained in remote observation sites. The waveform information in the remote site is transmitted by a waveform transmission network to the structure under control. The waveform transmission network is realized by interconnecting multiple controlled structures and observation sites. By using the future waveform information obtained through the network, we propose a control law realizing fairly higher control performance over the conventional structural control methodologies. A preview control law consisting of the state-feedback and feedforward control (preview action) is adopted. For the preview action, future values of the disturbance in some time interval are necessary. However, because the future value of the earthquake waveform is unknown, the preview action contributing the performance improvement is generally impossible. To get over this difficulty, an AI-based wave estimation system to estimate the future earthquake waveform is proposed. The wave estimation system is a multi-layered artificial neural network (ANN). Through a small scale simulation study with a recorded earthquake event in Japan, we show that the proposed control method achieves much higher control performance over the conventional LQ-based active control.
机译:我们提出了一种基于远程观察站点中获得的未来地震波形信息的新的主动振动控制策略。远程站点中的波形信息由波形传输网络传输到控制下的结构。通过互连多个受控结构和观察位点来实现波形传输网络。通过使用通过网络获得的未来波形信息,我们提出了一种对传统结构控制方法的相当更高的控制性能的控制法。采用了由状态反馈和前馈控制(预览动作)组成的预览控制法。对于预览动作,需要在某个时间间隔内的未来干扰值。但是,由于地震波形的未来价值未知,因此通常不可能提高性能改善的预览动作。为了克服这种困难,提出了一种基于AI的波估计系统来估计未来的地震波形。波估计系统是多层人工神经网络(ANN)。通过小型模拟研究,在日本的历史地震事件中进行了一项小规模的仿真研究,我们表明该拟议的控制方法在传统的基于LQ的主动控制上实现了更高的控制性能。

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