客户端网络点对点上传流量绑定

Chun-Ying Huang, C. Lei
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引用次数: 3

摘要

点对点技术目前已成为具有相同兴趣的对等体之间交换数字内容的主要技术之一。然而,随着点对点流量的增加,网络管理员希望控制点对点应用程序消耗的网络资源。由于使用随机端口和协议加密,很难识别并对点对点流量实施适当的控制策略。我们如何正确地绑定点对点流量,并防止它消耗所有可用的网络资源?在本文中,我们提出了一种算法,该算法试图在不检查数据包有效负载的情况下近似地绑定点对点流量消耗的网络资源。我们的方法特别关注上传流量,因为ISP的上传带宽通常比下载带宽更宝贵。该方法分为两个阶段构造。首先,我们观察了点对点应用程序和传统的基于客户机-服务器的Internet服务的几个流量特征。我们还观察了客户端网络中的通用流量属性。然后,基于网络流量在时间和空间域中的对称性,我们提出使用位图过滤器来绑定点对点应用程序消耗的网络资源。该算法只需要恒定的存储时间和计算时间。评估还表明,在使用少量内存的情况下,对等流量可以适当地限制在接近预定义量的范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bounding Peer-to-Peer Upload Traffic in Client Networks
Peer-to-peer technique has now become one of the major techniques to exchange digital content between peers of the same interest. However, as the amount of peer-to-peer traffic increases, a network administrator would like to control the network resources consumed by peer-to-peer applications. Due to the use of random ports and protocol encryption, it is hard to identify and apply proper control policies to peer-to-peer traffic. How do we properly bound the peer-to-peer traffic and prevent it from consuming all the available network resources? In this paper, we propose an algorithm that tries to approximately bound the network resources consumed by peer-to-peer traffic without examining packet payloads. Our methodology especially focuses on upload traffic for that the upload bandwidth for an ISP are usually more precious than download bandwidth. The method is constructed in two stages. First, we observe several traffic characteristics of peer-to-peer applications and traditional client-server based Internet services. We also observe the generic traffic properties in a client network. Then, based on the symmetry of network traffic in both temporal and spatial domains, we propose to use a bitmap filter to bound the network resources consumed by peer-to-peer applications. The proposed algorithm takes only constant storage and computation time. The evaluation also shows that with a small amount of memory, the peer-to-peer traffic can be properly bounded close to a predefined amount.
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