Dai Ze-Bing, Huang Jin-Zhi, Wang Hong-Xia
School of Civil Engineering and Mechanics, Shanghai Jiaotong University, Shanghai 200240, China.
J Zhejiang Univ Sci. 2004 Mar;5(3):317-25. doi: 10.1007/BF02841017.
This paper presents a semi-active strategy for seismic protection of a benchmark cable-stayed bridge with consideration of multiple-support excitations. In this control strategy, Magnetorheological (MR) dampers are proposed as control devices, a LQG-clipped-optimal control algorithm is employed. An active control strategy, shown in previous researches to perform well at controlling the benchmark bridge when uniform earthquake motion was assumed, is also used in this study to control this benchmark bridge with consideration of multiple-support excitations. The performance of active control system is compared to that of the presented semi-active control strategy. Because the MR fluid damper is a controllable energy- dissipation device that cannot add mechanical energy to the structural system, the proposed control strategy is fail-safe in that bounded-input, bounded-output stability of the controlled structure is guaranteed. The numerical results demonstrated that the performance of the presented control design is nearly the same as that of the active control system; and that the MR dampers can effectively be used to control seismically excited cable-stayed bridges with multiple-support excitations.
本文提出了一种考虑多点激励的基准斜拉桥地震保护半主动策略。在该控制策略中,提出采用磁流变(MR)阻尼器作为控制装置,并采用线性二次高斯(LQG)截断最优控制算法。本研究还采用了一种在先前研究中显示在假定均匀地震动时对基准桥控制效果良好的主动控制策略,以考虑多点激励来控制该基准桥。将主动控制系统的性能与所提出的半主动控制策略的性能进行了比较。由于MR流体阻尼器是一种可控的能量耗散装置,不能向结构系统添加机械能,因此所提出的控制策略是故障安全的,即保证了受控结构的有界输入、有界输出稳定性。数值结果表明,所提出的控制设计的性能与主动控制系统的性能几乎相同;并且MR阻尼器可有效地用于控制具有多点激励的地震激励斜拉桥。