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首页> 外文期刊>Advances in Structural Engineering >Optimal Bounded Control of Hysteretic Systems under External and Parametrical Random Excitations
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Optimal Bounded Control of Hysteretic Systems under External and Parametrical Random Excitations

机译:外部和参数随机激励下滞回系统的最优有界控制

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摘要

A method for designing optimal bounded control of nonlinear hysteretic systems under externally and parametrically random excitations is presented and illustrated with a numerical example on hysteretic column. The hysteretic system subjected to random excitations is firstly replaced by an equivalent nonlinear non-hysteretic stochastic system. Then, the Itô stochastic differential equation for the total energy of the system as a controlled diffusion process is derived by using the stochastic averaging method of energy envelope. For the semi-infinite time interval ergodic control, the dynamic programming equation is established based on the stochastic dynamical programming principle, and the optimal bounded control law is obtained from this equation under the control constraint. The responses of uncontrolled and controlled hysteretic systems are predicted and used for evaluating control efficacy. The robustness of the optimal bounded control for the hysteretic system with uncertain parameters is further analyzed. Numerical results show that the proposed control method has high efficacy and good robustness.
机译:提出了一种在外部和参数随机激励下设计非线性滞后系统最优有界控制的方法,并通过滞后列上的数值示例进行了说明。受到随机激励的磁滞系统首先被等效的非线性非磁滞随机系统代替。然后,利用能量包络线的随机平均方法,推导了系统总能量作为受控扩散过程的伊藤随机微分方程。对于半无限时间遍历遍历控制,根据随机动力学规划原理建立了动态​​规划方程,并在控制约束下从该方程中得到了最优有界控制律。可以预测不受控制和受控制的滞后系统的响应,并将其用于评估控制效果。进一步分析了具有不确定参数的磁滞系统最优有界控制的鲁棒性。数值结果表明,该控制方法具有较高的有效性和鲁棒性。

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