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A General Method for Semi-active Feedback Control of Variable Friction Dampers

机译:变摩擦阻尼器半主动反馈控制的通用方法

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Although there are many well-established control methods for vibration mitigation of seismic structures with active devices, their direct application for structures with semi-active control devices are limited. This limitation is primarily contributed by the fact that a semi-active device can only provide a resistant (passive) force to the controlled structure. In this paper, a general method for semi-active feedback control of seismic structures with variable friction dampers (VFD) is proposed. In order to overcome the force limitation of friction dampers, the method forms a semi-active feedback gain by multiplying an active gain with Heaviside functions. Based on this method, two newly developed control laws, i.e., semi-active modal control and semi-active optimal control were numerically investigated. A multiple DOF structural system with various sensor deployments, for either full-state or direct-output feedbacks was considered in the numerical study. The performances of both semi-active control laws for seismic vibration mitigation were compared with those of passive and active controls. The numerical results showed that both semi-active controls resulted in better acceleration reductions than the passive case and were able to closely imitate the performance of their active control counterparts.
机译:尽管有许多行之有效的控制方法来缓解带有主动装置的地震结构的振动,但它们在带有半主动控制装置的结构中的直接应用受到限制。这种限制主要是由于半主动设备只能向受控结构提供抵抗力(被动)的事实所致。本文提出了一种具有可变摩擦阻尼器(VFD)的地震结构半主动反馈控制的通用方法。为了克服摩擦阻尼器的力限制,该方法通过将主动增益与Heaviside函数相乘来形成半主动反馈增益。基于这种方法,数值研究了两种新开发的控制律,即半主动模态控制和半主动最优控制。在数值研究中考虑了具有各种传感器部署的多自由度结构系统,用于全状态或直接输出反馈。将两种半主动控制律的减震性能与被动和主动控制的性能进行了比较。数值结果表明,两种半主动控制均比被动控制产生了更好的加速度降低,并且能够紧密模仿其主动控制对等方的性能。

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