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首页> 外文期刊>International Journal of System Dynamics Applications: An official publication of the Information Resources Management Association >Fractional-Order Optimal Control of Fractional-Order Linear Vibration Systems with Time Delay
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Fractional-Order Optimal Control of Fractional-Order Linear Vibration Systems with Time Delay

机译:具有延迟的分数级线性振动系统的分数顺序最优控制

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摘要

Vibration control of fractional-order linear systems in the presence of time delays has been dealt in this article. Considering a delayed n-degree-of freedom linear structure that is modeled by fractional order equations, a fractional-order optimal control is provided to minimize both control input and output of delayed system via quadratic objective function. To do this, first the fractional order model of system that is subject to time delay is rewritten into a non-delay form through a particular transformation. Then, a fractional order optimal controller is provided using the classical optimal control theory to find an optimal input control. A delayed viscose system is then presented as a practical worked-out example. Numerical simulation results are given to confirm the efficiency of the proposed control method.
机译:本文已在存在时间延迟存在下分数级线性系统的振动控制。 考虑到由分数级方程建模的延迟的N度自由线性结构,提供了一种分数级的最优控制,以通过二次目标函数最小化延迟系统的控制输入和输出。 为此,首先通过特定的转换重写为延迟时间延迟的系统的分数阶模型。 然后,使用经典的最佳控制理论提供分数阶最佳控制器以找到最佳输入控制。 然后将延迟的粘胶系统作为实际的实施例呈现。 给出了数值模拟结果证实了所提出的控制方法的效率。

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