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An efficient and fair explicit congestion control protocol for high bandwidth-delay product networks

机译:高带宽延迟产品网络的高效公平的显式拥塞控制协议

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摘要

XCP and VCP can achieve excellent performance under high bandwidth-delay product networks, but they all have some defects. In XCP, router needs to calculate a feedback for each departing packet, the cost will be un-negligible in high-speed networks. In VCP, router classifies the degree of congestion into three regions and encodes it in ECN bits to guide sender to update its congestion window (cwnd). Obviously, the feedback in VCP is still not precise enough so that VCP has slow fairness convergence speed. Moreover VCP does not consider the TCP unfairness problem induced by heterogeneous packet sizes. Furthermore, both XCP and VCP cannot solve unfairness problem led by multiple bottleneck routers.rnTo overcome drawbacks in XCP and VCP, we propose a new efficient and fair explicit congestion control protocol in this paper, for convenience, we call it EFXCP. In a sample interval, EFXCP router calculates an expected fair throughput and feedbacks it to senders. EFXCP sender updates its cwnd to make its' throughput converge to expected fair throughput so that the system can rapidly converge to the optimal state. On the one hand, EFXCP calculates feedback only once in a sample interval, the calculation cost is much less than that in XCP. On the other hand, EFXCP adopts the precise feedback, the fairness convergence speed is much faster than that in VCP. Furthermore, one outstanding advantage of EFXCP is that it can achieve excellent fairness in all cases, all competing flows have almost the same throughput when system is stable.rnUsing control theory, we demonstrate that EFXCP is global asymptotic stable regardless of bottleneck capacity, round trip delay time (RTT) and number of sources. Moreover, we quantificationally analyze the rise time and the fairness convergence time of EFXCP. Further, we evaluate the performance of EFXCP using extensive NS2 simulations over a wide range of network scenarios, the results show that EFXCP retains the advantages of XCP and VCP, and discards their disadvantages, and achieves excellent performance. Moreover, like VCP and XCP, the router does not maintain per-flow state.
机译:XCP和VCP在高带宽延迟的产品网络下可以实现出色的性能,但是它们都有一些缺陷。在XCP中,路由器需要为每个离开的数据包计算一个反馈,因此在高速网络中的成本将不可忽略。在VCP中,路由器将拥塞程度分为三个区域,并将其编码为ECN位,以指导发送方更新其拥塞窗口(cwnd)。显然,VCP中的反馈仍然不够精确,因此VCP的公平收敛速度较慢。而且,VCP不考虑由异构数据包大小引起的TCP不公平问题。此外,XCP和VCP都不能解决由多个瓶颈路由器导致的不公平问题。为了克服XCP和VCP的缺点,我们在本文中提出了一种新的高效公平的显式拥塞控制协议,为方便起见,我们将其称为EFXCP。在一个样本间隔中,EFCSP路由器计算预期的公平吞吐量并将其反馈给发送方。 EFXCP发送方更新其cwnd,以使其吞吐量收敛到预期的公平吞吐量,以便系统可以迅速收敛到最佳状态。一方面,EFXCP在一个采样间隔内仅计算一次反馈,其计算成本远低于XCP。另一方面,EFXCP采用精确的反馈,公平收敛速度比VCP快得多。此外,EFXCP的一个突出优点是它可以在所有情况下都实现出色的公平性,当系统稳定时,所有竞争流都具有几乎相同的吞吐量。使用控制理论,我们证明了EFXCP是全局渐近稳定的,而不管瓶颈容量,往返行程如何延迟时间(RTT)和信号源数量。此外,我们定量分析了EFXCP的上升时间和公平收敛时间。此外,我们在广泛的网络场景中使用大量的NS2仿真来评估EFXCP的性能,结果表明EFXCP保留了XCP和VCP的优点,而摒弃了它们的缺点,并获得了出色的性能。而且,像VCP和XCP一样,路由器不保持每流状态。

著录项

  • 来源
    《Computer Communications》 |2009年第10期|1138-1147|共10页
  • 作者单位

    School of Information Engineering, University of Science and Technology, Beijing, China;

    Department of Computer Science and Technology, Tsinghua University, Beijing 100084, China;

    College of Automation, Northwestern Polytechnical University, Xi'an 710072, China;

    School of Information Engineering, Chang'an University, Xi'an 710064, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    high-speed network; congestion control; fairness;

    机译:高速网络;拥塞控制公平;

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