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Non-clipping optimal control of randomly excited nonlinear systems using semi-active ER/MR dampers

机译:使用半主动ER / MR阻尼器的随机激发非线性系统的非剪辑最佳控制

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A stochastic optimal control strategy for randomly excited nonlinear systems using semi-active electro-rheological/magneto-rheological (ER/MR) dampers is developed based on the stochastic averaging method, stochastic dynamical programming, and variational principle. The control force of ER/MR dampers is separated into passive part and controllable part. The passive part is incorporated into the uncontrollable terms and the stochastic averaging method is applied to the system with controllable damping force to yield a diffusion process of system energy along with Ito stochastic differential equations. Then the stochastic dynamical programming principle is applied to the controlled energy process to establish a dynamical programming equation. According to the variational principle, optimal control force is obtained from the dynamical programming equation under the constraint that ER/MR dampers are only able to exert dissipative forces. Because the requirement of dissipative control force is directly enforced as a constraint condition in the variational formula, the resulting control force is a generalized damping force and always implementable by ER/MR dampers without clipping. An example is given to illustrate the application and effectiveness of the proposed non-clipping semi-active control method.
机译:基于随机平均方法,随机动力学编程和变分原理,开发了使用半主动电流流变/磁流变(ER / MR)阻尼器随机激发非线性系统的随机最佳控制策略。 ER / MR阻尼器的控制力分离成无源部件和可控部件。无源部分被纳入不可控制的术语,随机平均方法应用于具有可控阻尼力的系统,以产生系统能量的扩散过程以及ITO随机微分方程。然后将随机动力编程原理应用于受控能量过程以建立动态编程方程。根据变分原理,从er / Mr阻尼器仅能够施加耗散力的约束下,从动力编程方程获得最佳控制力。因为耗散控制力的要求直接在变分式中作为约束条件强制执行,所得到的控制力是广义阻尼力,并且始终可由ER / MR阻尼器的速度可实现而没有剪切。给出一个例子来说明所提出的非剪辑半主动控制方法的应用和有效性。

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