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Performance Enhancement of Multipath TCP for Wireless Communications With Multiple Radio Interfaces

机译:具有多个无线电接口的无线通信中多路径TCP的性能增强

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Multipath transmission control protocol (MPTCP) allows a TCP connection to operate across multiple paths simultaneously and becomes highly attractive to support the emerging mobile devices with various radio interfaces and to improve resource utilization as well as connection robustness. The existing multipath congestion control algorithms, however, are mainly loss-based and prefer the paths with lower drop rates, leading to severe performance degradation in wireless communication systems, where random packet losses occur frequently. To address this challenge and improve the performance of MPTCP in wireless networks, this paper proposes a new mVeno algorithm, which makes full use of the congestion information of all the subflows belonging to a TCP connection in order to adaptively adjust the transmission rate of each subflow. Specifically, mVeno modifies the additive increase phase of Veno so as to effectively couple all subflows by dynamically varying the congestion window increment based on the receiving ACKs. The weighted parameter of each subflow for tuning the congestion window is determined by distinguishing packet losses caused by random error of wireless links or by network congestion. We implement mVeno in a Linux server and conduct extensive experiments both in test bed and in real WAN to validate its effectiveness. The performance results demonstrate that compared with the existing schemes, mVeno increases the throughput significantly, achieves load balancing, and can keep the fairness with regular TCP.
机译:多路径传输控制协议(MPTCP)允许TCP连接同时在多个路径上运行,并变得具有极大的吸引力,以支持具有各种无线电接口的新兴移动设备并提高资源利用率以及连接鲁棒性。然而,现有的多路径拥塞控制算法主要基于损耗,并且倾向于具有较低丢包率的路径,从而导致无线通信系统中的性能严重下降,在无线通信系统中随机分组丢失经常发生。为了解决这一挑战并提高无线网络中MPTCP的性能,本文提出了一种新的mVeno算法,该算法充分利用了属于TCP连接的所有子流的拥塞信息,以自适应地调整每个子流的传输速率。具体来说,mVeno修改了Veno的加性增加阶段,以便通过基于接收的ACK动态地改变拥塞窗口增量来有效地耦合所有子流。通过区分由无线链路的随机错误或网络拥塞引起的分组丢失来确定用于调整拥塞窗口的每个子流的加权参数。我们在Linux服务器中实现mVeno,并在测试台和真实WAN中进行大量实验以验证其有效性。性能结果表明,与现有方案相比,mVeno显着提高了吞吐量,实现了负载平衡,并且可以与常规TCP保持公平。

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