北京交通大学电子信息工程学院,北京,100044
网络出版:2018-10-25,
纸质出版:2018
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权伟, 崔恩放, 张宏科. 多源协作的传输控制机制[J]. 电子学报, 2018,46(10):2527-2533.
QUAN Wei, CUI En-fang, ZHANG Hong-ke. Multi-source Collaborative Transmission Control Mechanism[J]. Acta Electronica Sinica, 2018, 46(10): 2527-2533.
权伟, 崔恩放, 张宏科. 多源协作的传输控制机制[J]. 电子学报, 2018,46(10):2527-2533. DOI: 10.3969/j.issn.0372-2112.2018.10.029.
QUAN Wei, CUI En-fang, ZHANG Hong-ke. Multi-source Collaborative Transmission Control Mechanism[J]. Acta Electronica Sinica, 2018, 46(10): 2527-2533. DOI: 10.3969/j.issn.0372-2112.2018.10.029.
多路径传输控制协议(Multipath Transmission Control Protocol,MPTCP)是传输控制协议的一种扩展,实现端到端动态地利用多个地址建立多条传输路径,从而提高网络传输质量和可靠性.但是,MPTCP仍存在局限,能够解决端到端已确定的多路径调度问题,但难以实现不同端以及变化端间的路径协作.智慧协同网络是一种新型的未来网络体系,其核心思想是通过网络组件的智慧协作,最大限度优化利用网络资源,提高网络工作效率.本论文提出了基于智慧协同网络的多源协作传输控制机制,实现了传输控制协议从单源多路径向多源多路径的突破.具体来说,首先刻画了一种智慧协同网络的多源协作传输架构,引入子源协作传输方法,并详细介绍了多源协作机制的理论模型、报文格式以及子源协作管理的核心工作流程.通过仿真实验验证,多源协作传输控制机制能够将拥塞窗口平均利用率从51%提升至96%,并提高网络利用率和吞吐量.
MPTCP
as an extension of the TCP
is proposed to support using multiple addresses for multipath transmission. However
focusing on the collaboration of multiple interfaces inner one terminal
the original MPTCP protocol is difficult to realize collaboration among multiple sources. Smart Identifier Network (SINET) is a new architecture for the future Internet
the core idea of which is to maximize network utilization through a large scale of component collaborations. In this paper
we extend the current uni-source MPTCP to the multi-sources MPTCP
and propose an SINET based multi-source collaborative transmission solution. Specially
we introduce the multiple sub-source collaboration methods and details the models and the core workflow. Simulation results show that the proposed mechanism can improve the utilization ratio of congestion windows from 51% to 96%
hence improves network utilization and throughput greatly.
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