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Open-Loop Link Adaptation for Next-Generation IEEE 802.11n Wireless Networks

机译:下一代IEEE 802.11n无线网络的开环链路适配

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摘要

In this paper, we propose a novel open-loop autorate fallback algorithm (i.e., the AutoRate Fallback for High-Throughput (ARFHT) algorithm) for the emerging high-throughput (HT) IEEE 802.11n wireless networks. ARFHT extends the legacy link adaptation algorithms for single-input–single-output (SISO) wireless networks to be applicable in the context of multiple-input–multiple-output (MIMO)-based 802.11n wireless networks. It adapts the MIMO mode in terms of spatial multiplexing and spatial diversity, which are the two fundamental characteristics of MIMO technology. It also modifies the link estimation and probing behavior of legacy SISO algorithms. The combined adaptation to the appropriate MIMO mode and the modulation coding scheme together achieves more efficient channel utilization. We will present in detail the design guidelines and key ideas for the ARFHT algorithm. A comprehensive simulation study using ns-2 demonstrates that ARFHT achieves excellent throughput and packet error-rate performance in diverse environments and is highly responsive to time-varying link conditions with minimum computational complexity and protocol overhead.
机译:在本文中,我们针对新兴的高吞吐量(HT)IEEE 802.11n无线网络提出了一种新颖的开环自动速率后备算法(即,高吞吐量的自动速率后备(ARFHT)算法)。 ARFHT扩展了用于单输入单输出(SISO)无线网络的传统链路自适应算法,以适用于基于多输入多输出(MIMO)的802.11n无线网络。它在空间复用和空间分集方面适应了MIMO模式,这是MIMO技术的两个基本特征。它还修改了传统SISO算法的链路估计和探测行为。对适当的MIMO模式的组合适应和调制编码方案共同实现了更有效的信道利用。我们将详细介绍ARFHT算法的设计指南和关键思想。使用ns-2进行的全面模拟研究表明,ARFHT在各种环境中均具有出色的吞吐量和数据包错误率性能,并且以最小的计算复杂性和协议开销对时变链路条件具有高度的响应能力。

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