基于仿真的网络性能评估中可控延迟(Codel)与随机早期检测(Red)的比较研究

Komolafe T.A., Oladimeji O.A., Adiamo O.O., Oyebode O.O., Oyeniyi R.O.A.
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摘要

对于具有不同服务质量(QOS)要求的对时间/延迟敏感的应用程序使用互联网的需求日益增长,这使得网络管理和控制更具挑战性。目前传输控制协议(TCP)的拥塞避免和控制机制不足以在所有情况下提供良好的服务。几十年前,TCP成功地规范了互联网拥塞控制。然而,人们已经普遍认识到TCP已经达到了它的极限,在不久的将来需要新的拥塞控制协议。这促使人们对新的拥塞控制设计进行大量的研究,以满足未来互联网的需求。随着公众的广泛关注和研究,满缓冲问题不但没有消失,反而恶化了。因此,人们对在Internet路由器中使用活动队列管理(AQM)来最小化队列延迟的兴趣激增。本研究评估了最近开发的AQM,即控制延迟(CoDel)算法的有效性,该算法设计用于当今的网络设置,并且可以作为bufferbloat解决方案的主要部分进行部署。CoDel的有效性通过在ns-3中运行模拟来评估,并将其结果与另一种有前途的网络队列管理技术随机早期检测(RED)的结果进行比较。
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A Simulation-Based Comparative Study of Controlled Delay (Codel) with Random early Detection (Red) for Network Performance Evaluation
The rising need to use the internet for time/delay-sensitive applications with different Quality of Service (QOS) requirements has made network management and control even more challenging. The current congestion avoidance and control mechanisms for Transport Control Protocol (TCP) are insufficient to offer good service in all circumstances. A few decades ago, the TCP successfully regulated Internet congestion control. However, it is already widely acknowledged that TCP has reached its limits and that new congestion control protocols will be required in the near future. This has prompted a significant amount of research on novel congestion control designs that will meet the demands of the future Internet. With widespread public attention and study, the full buffer problem has not gone away, but rather worsened. As a result, there has been a surge in interest in using Active Queue Management (AQM) in Internet routers to minimize queue latency. The effectiveness of a recently developed AQM, Controlled Delay (CoDel) algorithm, designed to work in today’s network setups and can be deployed as a main part of the bufferbloat solution, is evaluated in this research study. CoDel's effectiveness is evaluated by running simulations in ns-3 and comparing its results to that of Random Early Detection (RED), another promising network queue management technique.
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