虚拟机调度影响下的MPTCP

Phuong Ha, Lisong Xu
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引用次数: 0

摘要

多路径TCP (MPTCP)近年来引起了网络社区的关注,因为它可以通过多个网络接口同时传输数据,从而提高了性能和稳定性。现有的关于MPTCP协议的研究只局限于传统的有线和无线网络。与此同时,云计算发展迅速,在私有云和公共云中部署了大量的应用程序,在这些应用程序中,通常采用虚拟机调度技术在虚拟机之间共享物理cpu。这促使我们研究MPTCP在VM调度影响下的性能。我们首次证明了虚拟机调度对所有MPTCP子流的吞吐量产生负面影响。具体来说,虚拟机调度导致MPTCP拥塞控制总体侵略性参数计算不准确,导致所有MPTCP子流的拥塞窗口增量缓慢,而不仅仅是单个子流。这最终导致MPTCP在云网络中的整体性能较差。我们提出了一个改进的MPTCP版本,该版本在MPTCP计算其总体侵略性参数和拥塞窗口时考虑了虚拟机调度噪声。实验结果表明,改进后的MPTCP在云网络中的性能比原来的MPTCP好得多(吞吐量提高了80%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MPTCP under Virtual Machine Scheduling Impact
Multipath TCP (MPTCP) has captured the networking community's attention in recent years since it simultaneously transfers data over multiple network interfaces, thus increases the performance and stability. Existing works on MPTCP study its performance only in traditional wired and wireless networks. Meanwhile, cloud computing has been growing rapidly with lots of applications deployed in private and public clouds, where virtual machine (VM) scheduling techniques are often adopted to share physical CPUs among VMs. This motivates us to study MPTCP's performance under VM scheduling impact. For the first time, we show that VM scheduling negatively impacts all MPTCP subflows' throughput. Specifically, VM scheduling causes the inaccuracy in computing the overall aggressiveness parameter of MPTCP congestion control, which leads to the slow increment of the congestion windows of all MPTCP subflows instead of just a single subflow. This finally results in a poor overall performance of MPTCP in cloud networks. We propose a modified version for MPTCP, which considers VM scheduling noises when MPTCP computes its overall aggressiveness parameter and its congestion windows. Experimental results show that our modified MPTCP performs considerably better (with up to 80% throughput improvement) than the original MPTCP in cloud networks.
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