MPMTP-AR: Multipath Message Transport Protocol Based on Application-Level Relay

MPMTP-AR: Multipath Message Transport Protocol Based on Application-Level Relay
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MPMTP-AR:基于应用级中继的多路径消息传输协议

DOI:
10.3837/tiis.2017.03.009
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发表时间:
2017-03
影响因子:
1.5
通讯作者:
Song Xiaoshi
Song Xiaoshi
中科院分区:
计算机科学4区
文献类型:
--
作者:
Liu Shaowei;Lei Weimin;Zhang Wei;Song Xiaoshi

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网络基础设施的最新进展为支持多路径数据传输提供了更多机会。与多归属场景相比,覆盖网络被认为是在不改变底层网络的情况下在终端设备之间构建多条路径的有效方式。利用多归属设备的 TCP 已经探索了利用多路径特性,但尚未详细研究覆盖网络的相应探索。为了提高可靠数据传输的体验质量(QoE),我们提出了一种基于应用级中继(MPMTP-AR)的多路径消息传输协议。 MPMTP-AR提出了支持多路径传输基本操作的机制和算法。动态反馈为各路径合理分配负载提供了基础。公共源减少(CSD)考虑拥塞路径的负载权重来调整拥塞窗口。 MPMTP-AR使用两级发送缓冲区来保证路径之间的独立性,并利用两级接收缓冲区来提高排队性能。最后,在Linux平台上实现MPMTP-AR并通过综合实验进行评估。
Recent advancements in network infrastructures provide increased opportunities to support data delivery over multiple paths. Compared with multi-homing scenario, overlay network is regarded as an effective way to construct multiple paths between end devices without any change on the underlying network. Exploiting multipath characteristics has been explored for TCP with multi-homing device, but the corresponding exploration with overlay network has not been studied in detail yet. Motivated by improving quality of experience (QoE) for reliable data delivery, we propose a multipath message transport protocol based on application level relay (MPMTP-AR). MPMTP-AR proposes mechanisms and algorithms to support basic operations of multipath transmission. Dynamic feedback provides a foundation to distribute reasonable load to each path. Common source decrease (CSD) takes the load weight of the path with congestion into consideration to adjust congestion window. MPMTP-AR uses two-level sending buffer to ensure independence between paths and utilizes two-level receiving buffer to improve queuing performance. Finally, the MPMTP-AR is implemented on the Linux platform and evaluated by comprehensive experiments.
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