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Adaptive Fuzzy Queue Management and Congestion Avoidance in TCP/AQM Networks

机译:TCP / AQM网络中的自适应模糊队列管理和拥塞避免

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摘要

Active Queue Management (AQM) takes a trade-off between link utilization and delay experienced by data packets. From control point of view, it is rational to regard AQM as a typical regulation system. Recently many AQM algorithms have been proposed to address performance degradations of end-to-end congestion control. However, these AQM algorithms show weaknesses to detect and control congestion under dynamically changing network situations. In this paper, an adaptive fuzzy AQM is designed to congestion avoidance in TCP/AQM networks. This kind of control action has robust performance, which is suitable for time varying and complex systems such as computer and communication networks. A candidate Lyapunov function is employed in the adaptive law synthesis to ensure convergence. A simulation study over a wide range of IP traffic conditions shows the effectiveness of the proposed controller in terms of the queue length dynamics, the packet loss rates, and the link utilization. Also, a complete comparison between the proposed fuzzy adaptive controller and classic Proportional-Integral (PI) controller is made, which the former has superior performance.
机译:活动队列管理(AQM)在链路利用率和数据包经历的延迟之间进行权衡。从控制的角度来看,将AQM视为典型的调节系统是合理的。最近,已经提出了许多AQM算法来解决端到端拥塞控制的性能下降。但是,这些AQM算法在动态变化的网络情况下显示出检测和控制拥塞的弱点。本文设计了一种自适应模糊AQM来避免TCP / AQM网络中的拥塞。这种控制动作具有强大的性能,适用于时变和复杂的系统,例如计算机和通信网络。在自适应定律综合中采用候选Lyapunov函数以确保收敛。在广泛的IP流量条件下进行的仿真研究表明,在队列长度动态,丢包率和链路利用率方面,该控制器的有效性。同时,对提出的模糊自适应控制器与经典比例积分(PI)控制器进行了比较,前者具有优越的性能。

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