有损网络中基于细粒度正向预测的多路径TCP动态包调度机制

Dan Ni, Kaiping Xue, P. Hong, Sean Shen
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引用次数: 34

摘要

如今,异构网络中的多接口终端可以通过多种接入技术接入Internet,从而尽可能多地聚合网络资源。多路径TCP通过剥离多个TCP流上的连接数据来同时利用多个路径,每个TCP流都通过一个不相交的路径。但是,由于路径特征(时延、带宽、丢包率等)不同,导致接收端存在大量乱序数据包的问题。以往的智能调度机制都忽略了丢包,在有损网络中变得很脆弱。在本文中,我们提出了基于细粒度正向预测的多路径TCP动态包调度机制(F2P-DPS)。它利用TCP建模的思想来估计在调度路径上的延迟和其他路径上同时发送的数据量,考虑丢包率,然后决定哪些数据包在调度不足的路径上发送。仿真结果表明,在有损网络中,我们的机制明显提高了吞吐量,减少了接收端缓存占用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fine-grained Forward Prediction based Dynamic Packet Scheduling Mechanism for multipath TCP in lossy networks
Nowadays, multi-interface terminals in heterogeneous network may access Internet through various access technologies, and further aggregate network resources from multiple paths as much as possible. Multipath TCP exploits multiple paths simultaneously by stripping data of a connection over multiple TCP flows, each of which is through a disjoint path. However, it encounters the problem caused by the great number of out-of-order packets at receiver due to dissimilar path characteristics, i.e. latency, bandwidth, packet loss rate, etc. The previous intelligent scheduling mechanisms to keep in-order delivery all ignored packet losses and became fragile in lossy networks. In this paper, we present Fine-grained Forward Prediction based Dynamic Packet Scheduling Mechanism(F2P-DPS) for multipath TCP. It utilizes the idea of TCP modeling to estimate the latency on the path under scheduling and the data amount sent on the other paths simultaneously, which takes packet loss rate into consideration, and then decides which packets to send on the under-scheduling path. From the simulation, we can see that our mechanism obviously improves throughput and reduces cache occupancy at receiver in lossy networks.
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