Characterizing SPDY over High Latency Satellite Channels

L. Caviglione, A. Gotta
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引用次数: 3

Abstract

The increasing complexity of Web contents and the growing diffusion of mobile terminals, which use wireless and satellite links to get access to the Internet, impose the adoption of more specialized protocols. In particular, we focus on SPDY, a novel protocol introduced by Google to optimize the retrieval of complex webpages, to manage large Round Trip Times and high packet losses channels. In this perspective, the paper characterizes SPDY over high latency satellite links, especially with the goal of understanding whether it could be an efficient solution to cope with performance degradations typically affecting Web 2.0 services. To this aim, we implemented an experimental set-up, composed of an ad-hoc proxy, a wireless link emulator, and an instrumented Web browser. The results clearly indicate that SPDY can enhance the performances in terms of loading times, and reduce the traffic fragmentation. Moreover, owing to its connection multiplexing architecture, SPDY can also mitigate the transport layer complexity, which is critical when in presence of Performance Enhancing Proxies usually deployed to isolate satellite trunks.
高延迟卫星信道上SPDY的特性
网络内容的日益复杂和移动终端的日益普及(移动终端使用无线和卫星链路接入互联网)迫使人们采用更专门的协议。我们特别关注SPDY,这是Google引入的一种新协议,用于优化复杂网页的检索,以管理大往返时间和高数据包丢失通道。从这个角度来看,本文描述了高延迟卫星链路上的SPDY,特别是为了了解它是否可以作为一种有效的解决方案来处理通常影响Web 2.0服务的性能下降。为此,我们实现了一个实验性设置,它由一个特设代理、一个无线链接模拟器和一个仪器化的Web浏览器组成。结果表明,SPDY可以在加载时间方面提高性能,并减少流量碎片。此外,由于其连接多路复用架构,SPDY还可以降低传输层的复杂性,这在通常部署用于隔离卫星中继的性能增强代理存在时至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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