联合传输速率,功率,和载波传感设置:初步测量研究

Thomas Huehn, R. Merz, C. Sengul
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引用次数: 7

摘要

在最近的文献中,已经为IEEE 802.11无线网络提出了各种各样的控制算法来调整载波传感、传输功率和传输速率。它们的目标范围从最大限度地提高吞吐量、空间重用和公平性到最大限度地减少网络中的干扰和拥塞。然而,在实践中,只有少数这些已经实现和分析,往往是因为访问和改变无线硬件中的必要参数太困难了。从本质上讲,人们对共同调整的传输速率、功率和载波检测阈值的相互作用以及它们对上述目标的影响知之甚少。因此,在本文中,我们将重点放在传输速率,功率和载波传感设置上。我们提供了常见的IEEE 802.11无线电硬件的详细描述,特别是在载波传感电路方面。然后,我们展示了验证和初始测量研究的结果,这些结果展示了在双链路场景中不同载波传感设置下发射功率和速率之间的相互作用。我们的初步研究结果表明,在有和没有载波传感的情况下,在吞吐量和公平性方面实现高性能的速率-功率组合数量有限。此外,在网络中同时存在强链路和弱链路的情况下,关闭载波感知可以显著提高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint Transmission Rate, Power, and Carrier Sense Settings: An Initial Measurement Study
A substantial variety of control algorithms to adjust carrier sensing, transmission power, and transmission rate have been proposed for IEEE 802.11 wireless networks in the recent literature. Their objectives range from maximizing throughput, spatial reuse, and fairness to minimizing interference and congestion within the network. However, only a few of these have been implemented and analysed in practice, often because accessing and changing the necessary parameters in the wireless hardware is too difficult. Essentially, there is little understanding about the interactions of jointly adjusted transmission rate, power and carrier sense thresholds, and their impact on the aforementioned objectives. Therefore, in this paper, we focus on transmission rate, power and carrier sensing settings. We provide a detailed description of the common IEEE 802.11 radio hardware, especially in terms of carrier-sensing circuitry. We then present our results from our validation and initial measurement study, which demonstrate interactions between transmit power and rate under different carrier-sensing settings in a two link scenario. Our initial findings indicate there exists a limited number of rate-power combinations that achieve high performance in terms of either throughput and fairness both with and without carrier sensing. Furthermore, in the case of both strong and weak links exist in the network, turning carrier sensing off significantly improves performance.
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