基于双队列的无线局域网吞吐量选择方案

Dongwan Kim, Wan-Seon Lim, Jongsun Park
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引用次数: 1

摘要

在IEEE 802.11 wlan中,无论接收方的信道条件如何,都使用固定的低传输速率进行多播传输。这可能导致无线信道的低效使用,特别是当接入点(AP)在传输队列中同时具有单播和多播数据帧时。为了有效利用无线信道,提出了一种基于双队列的速率选择调度方案。与具有单个FIFO队列的传统WLAN AP相比,提议方案中的AP在AP上维护两个单独的队列,一个用于单播数据,另一个用于多播数据。AP在接入无线信道时,根据信道条件和组播数据的延迟边界决定发送的数据类型(单播还是组播)和传输速率。仿真结果表明,与仅考虑信道条件决定传输数据速率的自动速率回落(ARF)相比,该方案可将平均数据速率和能耗提高13.7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual queue based rate selecting schedule for throughput enhancement in WLANs
In IEEE 802.11 WLANs, a fixed low transmission rate is used for multicast transmissions regardless of channel conditions of receivers. This may lead to inefficient use of wireless channel, especially when access point (AP) has both unicast and multicast data frames in the transmission queue. In this paper, we propose a dual queue based rate selecting schedule scheme for efficient use of wireless channel. In contrast to the legacy WLAN AP having a single FIFO queue, AP in the proposed scheme maintains two separate queues at the AP, one for unicast data and another for multicast data. When the AP accesses wireless channel, it decides a type of data (unicast or multicast) and transmission rate to be sent according to the channel condition and the delay boundary of multicast data. Our simulation results show that the proposed scheme increases the average data rate and energy consumption saving up to 13.7% compared to the auto rate fallback (ARF) which determines the transmission data rate only considering the channel condition.
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