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A robust fractional-order PID controller design based on active queue management for TCP network

机译:基于主动队列管理的TCP网络鲁棒分数阶PID控制器设计

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In this paper, a robust fractional-order controller is designed to control the congestion in transmission control protocol (TCP) networks with time-varying parameters. Fractional controllers can increase the stability and robustness. Regardless of advantages of fractional controllers, they are still not common in congestion control in TCP networks. The network parameters are time-varying, so the robust stability is important in congestion controller design. Therefore, we focused on the robust controller design. The fractional PID controller is developed based on active queue management (AQM). Dpartition technique is used. The most important property of designed controller is the robustness to the time-varying parameters of the TCP network. The vertex quasi-polynomials of the closed-loop characteristic equation are obtained, and the stability boundaries are calculated for each vertex quasipolynomial. The intersection of all stability regions is insensitive to network parameter variations, and results in robust stability of TCP/ AQM system. NS-2 simulations show that the proposed algorithm provides a stable queue length. Moreover, simulations show smaller oscillations of the queue length and less packet drop probability for FPID compared to PI and PID controllers. We can conclude from NS-2 simulations that the average packet loss probability variations are negligible when the network parameters change.
机译:在本文中,设计了鲁棒的分数阶控制器来控制具有时变参数的传输控制协议(TCP)网络中的拥塞。小数控制器可以提高稳定性和鲁棒性。不管分数控制器的优点如何,它们在TCP网络的拥塞控制中仍然不常见。网络参数是随时间变化的,因此鲁棒的稳定性在拥塞控制器设计中很重要。因此,我们专注于鲁棒的控制器设计。分数PID控制器是基于主动队列管理(AQM)开发的。使用了分区技术。设计的控制器最重要的属性是对TCP网络的时变参数的鲁棒性。得到闭环特征方程的顶点拟多项式,并为每个顶点拟多项式计算稳定性边界。所有稳定区域的交集对网络参数的变化不敏感,并导致TCP / AQM系统的鲁棒稳定性。 NS-2仿真表明,该算法提供了稳定的队列长度。此外,仿真显示,与PI和PID控制器相比,FPID的队列长度波动较小,丢包概率较小。我们可以从NS-2仿真得出结论,当网络参数发生变化时,平均丢包率的变化可以忽略不计。

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