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Complex Dynamic Behaviors of A Congestion Control System under A Fractional-order PD Control

机译:分数级PD控制下拥塞控制系统的复杂动态行为

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This paper proposed an original fractional-order proportional-derivative (PD) feedback controller which is designed to control the Hopf bifurcation caused by the congestion control system. The proposed PD~(1/n) controller has the different order with the original congestion system. The proposed fractional-order PD controller has the different order with the controlled system and the communication delay is selected as the bifurcation parameter. Then the conditions of the stability and Hopf bifurcation are obtained by analyzing its characteristic equation and the stability domain can be extended under the adjustment of appropriate control gain parameters and the order. Therefore, the congestion system becomes controllable and the desirable behaviors can be realized. Finally, numerical simulations are carried out to testify the validity of the theoretical analysis in the designed fractional-order PD controller.
机译:本文提出了一种原始的分数级比例衍生物(PD)反馈控制器,其旨在控制拥塞控制系统引起的跳跃分叉。所提出的PD〜(1 / N)控制器具有与原始拥塞系统不同的顺序。所提出的分数级PD控制器具有不同的顺序与受控系统不同,并且选择通信延迟作为分叉参数。然后通过分析其特征方程获得稳定性和跳蚤分叉分叉的条件,并且可以在适当的控制增益参数和订单的调整下延长稳定域。因此,拥塞系统可控制,并且可以实现所需的行为。最后,执行数值模拟,以证明所设计的分数级PD控制器中的理论分析的有效性。

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