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PHY modulation/rate control for fountain codes in 802.11a/g WLANs

机译:802.11a / g WLAN中用于源代码的PHY调制/速率控制

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摘要

In this paper we consider the joint performance of fountain codes and 802.11a/g PHY modulation/coding. We consider optimality both in terms of maximizing goodput and minimizing energy, and results are presented for both theoretical and experimental channel models. In contrast to studies in cellular networks, we find that in 802.1 la/g WLANs the cross-layer approach of a higher-layer fountain coding with a PHY layer modulation and FEC coding can yield very limited gains, and the PHY modulation/rate that optimizes the uncoded multicast performance is also close to that for fountain-coded multicast traffic over a wide-range of network conditions. This is potentially an important observation as it indicates that in 802.Ha/g WLANs cross-layer design for multicast rate control would bring few benefits and PHY layer rate control can be carried out without regard to the use of fountain coding at higher layers.
机译:在本文中,我们考虑了源代码和802.11a / g PHY调制/编码的联合性能。我们在最大化产量和最小化能量方面都考虑了最优性,并针对理论和实验渠道模型给出了结果。与蜂窝网络中的研究相比,我们发现在802.1 la / g WLAN中,具有PHY层调制和FEC编码的高层喷泉编码的跨层方法只能产生非常有限的增益,而PHY调制/速率优化的未编码多播性能也接近在广泛的网络条件下进行喷泉编码的多播流量的性能。这可能是一个重要的观察结果,因为它表明在802.Ha / g WLAN中,用于多播速率控制的跨层设计几乎不会带来任何好处,并且可以执行PHY层速率控制,而无需考虑在更高层使用喷泉编码。

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