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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Design of Active Queue Management for Robust Control on Access Router for Heterogeneous Networks
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Design of Active Queue Management for Robust Control on Access Router for Heterogeneous Networks

机译:异构网络接入路由器鲁棒控制的主动队列管理设计

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The Internet architecture is a packet switching technology that allows dynamic sharing of bandwidth among different flows with in an IP network. Packets are stored and forwarded from one node to the next until reaching their destination. Major issues in this integration are congestion control and how to meet different quality of service requirements associated with various services. In other words streaming media quality degrades with increased packet delay and jitter caused by network congestion. To mitigate the impact of network congestion, various techniques have been used to improve multimedia quality and one of those techniques is Active Queue Management (AQM). Access routers require a buffer to hold packets during times of congestion. A large buffer can absorb the bursty arrivals, and this tends to increase the link utilizations but results in higher queuing delays. Traffic burstiness has a considerable negative impact on network performance. AQM is now considered an effective congestion control mechanism for enhancing transport protocol performance over wireless links. In order to have good link utilization, it is necessary for queues to adapt to varying traffic loads. This paper considers a particular scheme which is called Adaptive AQM (AAQM) and studies its performance in the presence of feedback delays and its ability to maintain a small queue length as well as its robustness in the presence of traffic burstiness. The paper also presents a method based on the well-known Markov Modulated Poisson Process (MPP) to capture traffic burstiness and buffer occupancy. To demonstrate the generality of the presented method, an analytic model is described and verified by extensive simulations of different adaptive AQM algorithms. The analysis and simulations show that AAQM outperforms the other AQMs with respect to responsiveness and robustness.
机译:互联网体系结构是一种分组交换技术,它允许在IP网络中的不同流之间动态共享带宽。数据包被存储并从一个节点转发到下一个节点,直到到达目的地为止。集成中的主要问题是拥塞控制以及如何满足与各种服务相关的不同服务质量要求。换句话说,流媒体质量会因网络拥塞导致的数据包延迟和抖动增加而降低。为了减轻网络拥塞的影响,已经使用了各种技术来改善多媒体质量,并且这些技术之一是主动队列管理(AQM)。接入路由器需要一个缓冲区来在拥塞时保存数据包。较大的缓冲区可以吸收突发到达,这往往会增加链路利用率,但会导致更高的排队延迟。流量突发性会对网络性能产生相当大的负面影响。现在,AQM被认为是一种有效的拥塞控制机制,用于增强无线链路上的传输协议性能。为了具有良好的链路利用率,队列必须适应各种流量负载。本文考虑一种称为自适应AQM(AAQM)的特定方案,并研究其在存在反馈延迟的情况下的性能,其维持较小队列长度的能力以及在流量突发情况下的鲁棒性。本文还提出了一种基于著名的马尔可夫调制泊松过程(MPP)的方法来捕获流量突发性和缓冲区占用率。为了证明所提出方法的通用性,描述了一个解析模型,并通过对不同的自适应AQM算法进行了广泛的仿真验证了该模型。分析和仿真表明,AAQM在响应性和鲁棒性方面优于其他AQM。

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