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首页> 外文期刊>Journal of Zhejiang University. Science, A >Feedback maximization of reliability of MDOF quasi integrable-Hamiltonian systems under combined harmonic and white noise excitations
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Feedback maximization of reliability of MDOF quasi integrable-Hamiltonian systems under combined harmonic and white noise excitations

机译:反馈MDOF准一体化汉密尔顿系统的可靠性最大化在组合谐波和白噪声激励下的可靠性

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We studied the feedback maximization of reliability of multi-degree-of-freedom (MDOF) quasi integrable-Hamiltonian systems under combined harmonic and white noise excitations. First, the partially averaged It? equations are derived by using the stochastic averaging method for quasi integrable-Hamiltonian systems under combined harmonic and white noise excitations. Then, the dynamical programming equation and its boundary and final time conditions for the control problems of maximizing the reliability is established from the partially averaged equations by using the dynamical programming principle. The nonlinear stochastic optimal control for maximizing the reliability is determined from the dynamical programming equation and control constrains. The reliability function of optimally controlled systems is obtained by solving the final dynamical programming equation. Finally, the application of the proposed procedure and effectiveness of the control strategy are illustrated by using an example.
机译:我们研究了在组合谐波和白噪声激发下的多程度自由度(MDOF)准可集成汉密尔顿系统的可靠性最大化的反馈。首先,部分平均呢?通过使用组合谐波和白噪声激发下的准一体化 - 汉密尔顿系统的随机平均方法来源的等式。然后,通过使用动力学编程原理,从部分平均方程建立了动态​​编程方程及其用于控制​​问题的控制问题的边界和最终时间条件。用于最大化可靠性的非线性随机最佳控制由动态编程方程和控制约束确定。通过求解最终动力学编程方程,获得了最佳控制系统的可靠性函数。最后,通过使用示例说明了控制策略的所提出的程序和有效性的应用。

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