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Non-linear stochastic optimal control for coupled-structures system of multi-degree-of-freedom

机译:多自由度耦合结构系统的非线性随机最优控制

摘要

Coupled structures under random excitation are modelled as a quasi-integrable Hamiltonian system of multi-degree-of-freedom and the reduced-order model in structural mode space is formulated. A non-linear stochastic optimal control method for the system is presented. The non-linear optimal control of adjacent tall building structures coupled with supplemental control devices and under random seismic excitation is performed by using the proposed method. First, applying the stochastic averaging method to the system yields Itô stochastic differential equations for modal vibration energy processes, so that the system energy control is conducted generally instead of the system state control and the dimension of the control problem is reduced. Then applying the stochastic dynamical programming principle to the controlled diffusion processes yields a dynamical programming equation, taking into account random excitation spectra. An explicit polynomial solution to the equation is proposed to determine the non-linear optimal control forces. Furthermore, the response statistics of the controlled non-linear coupled structures under random seismic excitation are evaluated by using the stochastic averaging method, and are compared with those of the uncontrolled structures to determine the control efficacy. Numerical results illustrate the high control effectiveness and efficiency of the proposed non-linear stochastic optimal control method for coupled structures as a quasi-integrable Hamiltonian system.
机译:将随机激励下的耦合结构建模为一个多自由度的拟可积哈密顿系统,并建立了结构模态空间中的降阶模型。提出了系统的非线性随机最优控制方法。利用所提出的方法对相邻高层建筑结构与附加控制装置耦合并在随机地震激励下进行非线性最优控制。首先,将随机平均方法应用于系统会产生用于模态​​振动能量过程的Itô随机微分方程,因此通常进行系统能量控制而不是系统状态控制,从而减小了控制问题的范围。然后将随机动态规划原理应用于受控扩散过程,得出一个动态规划方程,其中考虑了随机激发光谱。提出了对该方程的显式多项式解,以确定非线性最佳控制力。此外,采用随机平均法评估随机地震激励下受控非线性耦合结构的响应统计量,并将其与非受控结构的响应统计量进行比较,以确定控制效果。数值结果表明,所提出的耦合结构作为拟可积哈密顿系统的非线性随机最优控制方法具有较高的控制效果和效率。

著录项

  • 作者

    Ying ZG; Ni YQ; Ko JM;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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