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Link Layer Adaptation for Shared Wireless Links

机译:共享无线链路的链路层适配

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While traditional link layer protocols assume that they fully control the underlying link, in contemporary wireless networks the link may be dynamically shared by sessions belonging to different users and/or applications. To assess the impact of link sharing, we measure the File Transfer and Web Browsing throughput achieved over a Selective Repeat (SR) protocol, with or without contention from Media Distribution. Our results indicate that the optimal protocol settings strongly depend on the level of contention for the link. We therefore present two link layer protocols that adapt to the available bandwidth, our Adaptive Selective Repeat (ASR) protocol which dynamically modifies its retransmission timeouts, and the Radio Link Control (RLC) protocol specified for use by Universal Mobile Telecommunications System networks which does not employ retransmission timers. We first repeat our performance measurements to determine the optimal settings for each protocol, and then compare the fine tuned versions of all protocols with respect to their File Transfer and Web Browsing throughput, as well as to the delay induced to the contending Media Distribution packets. Our results indicate that while both RLC and ASR are more stable than SR, the complex RLC does not match the performance of our simpler ASR.
机译:尽管传统的链路层协议假定它们完全控制基础链路,但是在当代无线网络中,该链路可以由属于不同用户和/或应用的会话动态共享。为了评估链接共享的影响,我们对通过选择性重复(SR)协议实现的文件传输和Web浏览吞吐量进行了评估,无论有无媒体分发竞争。我们的结果表明,最佳协议设置在很大程度上取决于链接的争用级别。因此,我们提出了两种适用于可用带宽的链路层协议,我们的自适应选择性重复(ASR)协议(可动态修改其重传超时)以及指定用于通用移动电信系统网络的无线链路控制(RLC)协议,该协议不使用重传计时器。我们首先重复性能测量,以确定每种协议的最佳设置,然后比较所有协议在其文件传输和Web浏览吞吐量以及竞争的媒体分发数据包引起的延迟方面的优化版本。我们的结果表明,尽管RLC和ASR都比SR更稳定,但复杂的RLC却不匹配我们更简单的ASR的性能。

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