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FMTCP: A Fountain Code-Based Multipath Transmission Control Protocol

机译:FMTCP:基于源代码的多路径传输控制协议

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摘要

Ideally, the throughput of a Multipath TCP (MPTCP) connection should be as high as that of multiple disjoint single-path TCP flows. In reality, the throughput of MPTCP is far lower than expected. In this paper, we conduct an extensive simulation-based study on this phenomenon, and the results indicate that a subflow experiencing high delay and loss severely affects the performance of other subflows, thus becoming the bottleneck of the MPTCP connection and significantly degrading the aggregate goodput. To tackle this problem, we propose Fountain code-based Multipath TCP (FMTCP), which effectively mitigates the negative impact of the heterogeneity of different paths. FMTCP takes advantage of the random nature of the fountain code to flexibly transmit encoded symbols from the same or different data blocks over different subflows. Moreover, we design a data allocation algorithm based on the expected packet arriving time and decoding demand to coordinate the transmissions of different subflows. Quantitative analyses are provided to show the benefit of FMTCP. We also evaluate the performance of FMTCP through ns-2 simulations and demonstrate that FMTCP outperforms IETF-MPTCP, a typical MPTCP approach, when the paths have diverse loss and delay in terms of higher total goodput, lower delay, and jitter. In addition, FMTCP achieves high stability under abrupt changes of path quality.
机译:理想情况下,多路径TCP(MPTCP)连接的吞吐量应与多个不相交的单路径TCP流的吞吐量一样高。实际上,MPTCP的吞吐量远远低于预期。在本文中,我们对该现象进行了广泛的基于模拟的研究,结果表明,经历高延迟和丢失的子流严重影响了其他子流的性能,从而成为MPTCP连接的瓶颈,并显着降低了总吞吐量。 。为了解决这个问题,我们提出了基于源代码的多路径TCP(FMTCP),该协议有效地减轻了不同路径异质性的负面影响。 FMTCP利用源代码的随机性,通过不同子流灵活地传输来自相同或不同数据块的编码符号。此外,我们基于预期的数据包到达时间和解码需求设计了一种数据分配算法,以协调不同子流的传输。提供定量分析以显示FMTCP的好处。我们还通过ns-2仿真评估了FMTCP的性能,并证明了当路径具有更高的总吞吐量,更低的延迟和抖动时,当路径具有各种损耗和延迟时,FMTCP优于IETF-MPTCP(一种典型的MPTCP方法)。此外,FMTCP在路径质量的突然变化下也能实现高稳定性。

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