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Bang-Bang and Semiactive Control with Variable Stiffness TMDs

机译:变刚度TMD的Bang-Bang和半主动控制

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A semiactive control strategy for the vibration control of structures using a stiffness varying tuned mass damper (TMD) with application of bang-bang control force to TMD is proposed. The control strategy involves a combination of controlling the response of structure using bang-bang control with a control force applied to the TMD, and the use of the principle of minimizing the maximum value of the frequency response function (FRF) for the coupled structure-variable stiffness TMD system. The optimal tuning parameter and damping ratio for the TMD are obtained based on this principle. When the control force is applied to the TMD, the TMD is simultaneously retuned (by varying the stiffness) in real time to achieve the minimax principle for the desired level of response reduction. When the active control is ineffective or is turned off, the damper system acts as a passive TMD. The performance of the control strategy is examined under harmonic excitations and is compared to previous results on bang-bang control and minimax shaping of the FRF when the TMD is not retuned in real time. In order to examine the robustness of the controller, a wind excitation obtained from the Davenport spectrum is applied to a structure with low natural frequency. The control strategy is shown to achieve substantial response reduction with relatively low control force requirements.
机译:提出了一种半主动控制策略,该方法利用刚度可变调谐质量阻尼器(TMD)并在TMD上施加爆炸控制力来控制结构的振动。该控制策略包括以下两种方法的结合:使用爆炸控制和施加到TMD的控制力来控制结构的响应,以及将耦合结构的频率响应函数(FRF)的最大值最小化的原理的使用-变刚度TMD系统。基于此原理,可获得针对TMD的最佳调谐参数和阻尼比。当将控制力施加到TMD时,将同时实时重新调谐TMD(通过改变刚度),以实现期望的响应降低水平的minimax原理。当主动控制无效或关闭时,阻尼器系统将充当被动TMD。在TMD不实时调谐的情况下,在谐波激励下检查了控制策略的性能,并将其与以前在FRF的爆炸控制和minimax整形方面的结果进行了比较。为了检查控制器的鲁棒性,将从Davenport频谱获得的风激励应用于具有低固有频率的结构。示出了控制策略以相对较低的控制力要求实现了显着的响应减小。

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