比较了MPTCP和TCP的性能,提出了一种实现网络无缝切换的算法

S. Singh, S. Khara
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引用次数: 2

摘要

手机及其应用的处理每天都在增加,最新的移动站同时带有Wi-Fi和3G接口。由于互联网使用的增加,它应该提供不间断的互联网连接。然而,MPTCP在客户端和服务器之间同时维护两条或多条路径,并提供无缝连接,它是一个传输层协议。近年来,大量的研究人员对MPTCP的无缝切换表现出兴趣。我们使用MPTCP技术实现无缝切换,而在网络层工作的技术确实提供了故障恢复能力。本文的目标是提供两个异构网络之间的无缝切换。此外,我们进行了几个实验,并使用不同的带宽子流(以太网和Wi-Fi)和相同的带宽子流分析了MPTCP和常规TCP的性能,并将其与之前的工作进行了比较,即带宽如何影响MPTCP和TCP的性能。在此基础上提出了一种无缝切换算法,减少了以往工作的局限性,提高了无缝切换时的吞吐量等性能。我们在实际设备路由器、控制器和交换机上进行了实验,并使用了Mininet。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compare the performance of MPTCP and TCP and proposed an algorithm for seamless handover in Het-Net
Handing of mobile and its applications are increasing every day and latest mobile stations carry both Wi-Fi and 3G interfaces. Due to increases the use of internet it should provide the continuous connectivity of internet without any interruption. However MPTCP maintain the two or more path simultaneously between client and server and give seamless connectivity without break and it is a transport layer protocol. In recent years plethora of researcher shows interests to work with MPTCP for seamless handover. We are using MPTCP technique for seamless handover while techniques which works on network layer does provide failure recovery capability. The objective of this paper is to provide seamless handover between two heterogeneous networks. In addition to we performed the several experiments and analyse the performance of MPTCP and regular TCP using different bandwidth sub-flows (Ethernet and Wi-Fi) and same bandwidth sub-flows and compare this to the previous works that how bandwidth affect the performance of MPTCP and TCP. According to this we proposed an algorithm for seamless handover which reduce the limitation of previous works and increase the performance such as throughput during seamless handover. We implemented this experiment on real equipments routers, controllers, and switches and also used the Mininet.
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