基于多归属车联网网关的透明流量拼接迁移

Joshua Hare, Lance Hartung, Suman Banerjee
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引用次数: 4

摘要

我们提出一种称为FloMiS的技术,通过该技术可以将流从一个网络迁移到另一个网络,而不需要对端点(基于internet的服务器或移动客户端)进行任何更改。我们的工作受到车载互联网服务wirover的需求的推动,通过该服务,我们通过多网络网关为公共交通车辆(城市公交车以及在威斯康星州麦迪逊市及其周边运行的长途公交车)提供WiFi连接。在我们的车辆环境中,我们观察到每个蜂窝路径都会出现停滞和故障,导致网络流量中断。为了为这些流提供健壮且不间断的体验,我们单独在网关中实现了FloMiS机制,通过该机制,网关重新发起对中断流内容的请求,并以对移动客户端透明的方式将它们拼接回原始流。FloMiS旨在优化大多数网络流量,我们的分析(大约600万真实用户流)表明,FloMiS能够在两次往返时间内为93%以上的流量迁移一个流量。使用自己的机制的客户端通常会在断开连接几分钟后恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transparent flow migration through splicing for multi-homed vehicular Internet gateways
We propose a technique, called FloMiS, by which a flow can be migrated from one network to another without requiring any changes to the endpoints (Internet-based servers or mobile clients). Our work is motivated by the needs of our vehicular Internet service, calledWiRover, through which we provide WiFi connectivity in public transit vehicles - city buses as well as long distance buses operating in and around Madison, WI - using multi-network gateways. In our vehicular environment, we have observed that each cellular path experiences stalls and failures resulting in outages to network traffic. To provide robust and uninterrupted experience for these flows, we implement the FloMiS mechanism in the gateways alone, through which the gateways re-initiate a request for the contents of the interrupted flow and splice them back to the original flow in a manner that is transparent to the mobile clients. FloMiS is designed to optimize the majority of network traffic, which our analysis (of about 6 million real user flows) indicates that FloMiS is capable migrating a flow in as little as two round trip times for more than 93% of the traffic volume. Clients left to their own mechanisms would typically recover after several minutes of disconnectivity.
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