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Semi-active control of seismically excited structures with variable orifice damper using block pulse functions

机译:使用块脉冲功能的可变节流阻尼器对地震激励结构的半主动控制

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The present study aims at proposing an analytical method for semi-active structural control by using block pulse functions. The performance of the resulting controlled system and the requirements of the control devices are highly dependent on the control algorithm employed. In control problems, it is important to devise an accurate analytical method with less computational expenses. Block pulse functions (BPFs) set proved to be the most fundamental and it enjoyed immense popularity in different applications in the area of numerical analysis in systems science and control. This work focused on the application of BPFs in the control algorithm concerning decrease the computational expenses. Variable orifice dampers (VODs) are one of the common semi-active devices that can be used to control the response of civil Structures during seismic loads. To prove the efficiency of the proposed method, numerical simulations for a 10-story shear building frame equipped with VODs are presented. The controlled response of the frame was compared with results obtained by controlling the frame by the classical clipped-optimal control method based on linear quadratic regulator theory. The simulation results of this investigation indicated the proposed method had an acceptable accuracy with minor computational expenses and it can be advantageous in reducing seismic responses.
机译:本研究旨在提出一种通过使用块脉冲函数进行半主动结构控制的分析方法。最终受控系统的性能和控制设备的要求在很大程度上取决于所采用的控制算法。在控制问题中,重要的是设计一种计算量少的准确的分析方法。块脉冲函数(BPF)集被证明是最基本的,并且在系统科学和控制领域的数值分析领域的不同应用中得到了极大的普及。这项工作集中于BPF在控制算法中的应用,以减少计算费用。可变孔阻尼器(VOD)是常见的半主动装置之一,可用于控制地震荷载作用下土木结构的响应。为了证明该方法的有效性,对装有VOD的10层剪切建筑框架进行了数值模拟。将帧的受控响应与通过基于线性二次调节器理论的经典限幅最优控制方法控制帧所获得的结果进行了比较。这项研究的模拟结果表明,该方法具有可接受的精度,且计算量较小,并且在减少地震响应方面具有优势。

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