用于具有显式拥塞控制的以内容为中心的网络的传输协议

Feixiong Zhang, Yanyong Zhang, A. Reznik, Hang Liu, Chen Qian, Chenren Xu
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引用次数: 67

摘要

以内容为中心的网络(CCN)采用了一种接收方驱动的逐跳传输方法,这种方法促进了网络内缓存,从而为传输内容提供了多个源和多条路径。在这种情况下,为多路径流保留单个往返时间(RTT)估计器是不够的,因为每个路径可能经历不同的往返时间。为了解决这一问题,有人提出使用多个RTT估计器来预测网络状态。在本文中,我们研究了解决这个问题的另一种方法,CHoPCoP,它利用显式拥塞控制来应对多源,多路径的情况。CHoPCoP的协议设计创新包括随机早期标记(REM)方案,该方案明确表示网络拥塞,以及每跳公平共享兴趣塑造算法(FISP)和接收方兴趣控制方法(RIC),分别调节路由器和接收方的利率。我们在ORBIT测试平台上实现了CHoPCoP,并在各种网络和流量设置下进行了实验。评估结果表明,CHoPCoP是一种可行的方法,可以有效地处理多路径环境下的拥塞问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A transport protocol for content-centric networking with explicit congestion control
Content-centric networking (CCN) adopts a receiver-driven, hop-by-hop transport approach that facilitates in-network caching, which in turn leads to multiple sources and multiple paths for transferring content. In such a case, keeping a single round trip time (RTT) estimator for a multi-path flow is insufficient as each path may experience different round trip times. To solve this problem, it has been proposed to use multiple RTT estimators to predict network condition. In this paper, we examine an alternative approach to this problem, CHoPCoP, which utilizes explicit congestion control to cope with the multiple-source, multiple-path situation. Protocol design innovations of CHoPCoP include a random early marking (REM) scheme that explicitly signals network congestion, and a per-hop fair share Interest shaping algorithm (FISP) and a receiver Interest control method (RIC) that regulate the Interest rates at routers and the receiver respectively. We have implemented CHoPCoP on the ORBIT testbed and conducted experiments under various network and traffic settings. The evaluation shows that CHoPCoP is a viable approach that can effectively deal with congestion in the multipath environment.
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