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RAMCAST: Reliable and Adaptive Multicast Over IEEE 802.11n WLANs

机译:RAMCAST:IEEE 802.11n WLAN上的可靠和自适应多播

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摘要

Wireless multicast over IEEE 802.11 WLANs suffers from two well-known problems: poor reliability and low spectral efficiency. To overcome these problems, we propose a novel PHY/MAC cross-layer wireless multicast scheme called reliable and adaptive multicast (RAMCAST). By considering the frame aggregation of IEEE 802.11n, RAMCAST enables an access point (AP) to selectively retransmit erroneous multicast frames and to dynamically adjust modulation and coding scheme under varying channel conditions. In particular, empowered by the orthogonality of subcarriers in the OFDM symbol, RAMCAST enables multiple multicast clients to transmit feedback to the AP simultaneously without collision, resulting in very low feedback overhead. We verified the feasibility of RAMCAST through USRP/GNU radio-based experiments and conducted an extensive simulation study using ns-2, and we found that RAMCAST outperforms the state-of-the-art wireless multicast scheme.
机译:IEEE 802.11 WLAN上的无线多播存在两个众所周知的问题:可靠性差和频谱效率低。为了克服这些问题,我们提出了一种新颖的PHY / MAC跨层无线组播方案,称为可靠和自适应组播(RAMCAST)。通过考虑IEEE 802.11n的帧聚合,RAMCAST使接入点(AP)能够有选择地重传错误的多播帧,并在变化的信道条件下动态调整调制和编码方案。尤其是,通过OFDM符号中子载波的正交性,RAMCAST使多个多播客户端可以同时向AP发送反馈而不会发生冲突,从而降低了反馈开销。我们通过基于USRP / GNU无线电的实验验证了RAMCAST的可行性,并使用ns-2进行了广泛的仿真研究,我们发现RAMCAST的性能优于最新的无线多播方案。

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