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Adaptive rate-based congestion control with weighted fairness through multi-loop gradient projection internal model controller

机译:多环梯度投影内模控制器的加权公平性自适应速率拥塞控制

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As a transmission control protocol (TCP) implementation imposes the sources with small round trip time (RTT) to allocate the bottleneck unfairly, an adaptive congestion control is necessary to avoid packet loss along with fairness. The main idea of this paper is to design an adaptive rate-based queue management scheme based on gradient projection method and internal model control for network sources with different RTT values. The goal is to achieve weighted fairness, maximum utilisation and compatibility with both large and small RTTs. The communication network consisting of a bottleneck link and TCP sources is considered as a multi-input single-output system. In the proposed approach, the number of the active TCP sources is determined adaptively and the utilisation factors are updated. For this purpose, the gradient method is used to design the adaptation rule for the utilisation factors in order to obtain weighted fairness, and then the projection method is augmented with the gradient procedure to achieve maximum bottleneck utilisation. The proposed procedure can tolerate both large and small RTTs, and consequently, it can be used in a wide range of communication networks. Extensive simulations based on network simulator NS2 and Simulink validate the analytical results.
机译:由于传输控制协议(TCP)的实施要求源具有较小的往返时间(RTT)来不公平地分配瓶颈,因此有必要采用自适应拥塞控制来避免数据包丢失以及公平性。本文的主要思想是针对具有不同RTT值的网络源,设计一种基于梯度投影方法和内部模型控制的基于速率的自适应队列管理方案。目标是实现加权的公平性,最大的利用率以及与大型和小型RTT的兼容性。由瓶颈链接和TCP源组成的通信网络被视为多输入单输出系统。在所提出的方法中,自适应地确定活动TCP源的数量并更新利用率。为此,使用梯度法来设计利用率因子的自适应规则,以获得加权公平性,然后通过梯度法对投影法进行扩展,以最大程度地利用瓶颈。所提出的过程可以容忍大的和小的RTT,因此,它可以在广泛的通信网络中使用。基于网络模拟器NS2和Simulink的广泛模拟验证了分析结果。

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