基于IEEE 802.11 WLAN的TCP动态和自适应MAC重试限制的链路层自适应

Amir Shadmand, M. Shikh-Bahaei
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引用次数: 24

摘要

在本文中,我们开发了一种跨层方法,该方法结合了IEEE 802.11无线局域网(wlan)中介质访问控制(MAC)层的实时重试限制(RTL)自适应和传输控制协议(TCP)动态感知链路自适应。TCP吞吐量可以通过提高带宽来提高,但是由于重传而导致的延迟和带宽开销会随着重传而增加,并且必须有额外的控制流量来请求重传。因此,结合基于无线信道条件、流量特性和调用TCP协议知识的链路自适应,考虑MAC层内Retry-Limit设置的动态优化,以便在低丢帧率下实现更高的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TCP Dynamics and Adaptive MAC Retry-Limit Aware Link-Layer Adaptation over IEEE 802.11 WLAN
In this paper, we have developed a cross-layer approach which combines real-time Retry-Limit (RTL)adaptation at Medium Access Control (MAC) layer, with Transport Control Protocol (TCP) dynamics aware link adaptation at link-layer in IEEE 802.11 wireless local area networks (WLANs). TCP throughput can be enhanced by raising the ¿¿¿, but latency and bandwidth overheads due to retransmission increase with ¿¿¿ and additional control traffic must flow to request retransmissions. Thus, dynamic optimization of Retry-Limit setting within MAC layer is considered in conjunction with link adaptation based on the wireless channel conditions, traffic characteristic, and by invoking the knowledge of TCP protocols in order to achieve higher throughput at low frame loss rate.
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