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Robust rate adaptation for 802.11 wireless networks

机译:802.11无线网络的稳健速率适配

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摘要

Rate adaptation is a mechanism unspecified by the 802.11 standards, yet critical to the system performance by exploiting the multi-rate capability at the physical layer.I n this paper, we conduct a systematic and experimental study on rate adaptation over 802.11 wireless networks. Our main contributions are two-fold. First, we critique five design guidelines adopted by most existing algorithms. Our study reveals that these seemingly correct guidelines can be misleading in practice, thus incur significant performance penalty in certain scenarios. The fundamental challenge is that rate adaptation must accurately estimate the channel condition despite the presence of various dynamics caused by fading, mobility and hidden terminals. Second, we design and implement a new Robust Rate Adaptation Algorithm (RRAA)that addresses the above challenge. RRAA uses short-term loss ratio to opportunistically guide its rate change decisions, and an adaptive RTS filter to prevent collision losses from triggering rate decrease. Our extensive experiments have shown that RRAA outperforms three well-known rate adaptation solutions (ARF, AARF, and SampleRate) in all tested scenarios, with throughput improvement up to 143%.
机译:速率自适应是802.11标准未指定的一种机制,但通过利用物理层的多速率功能对系统性能至关重要。在本文中,我们对802.11无线网络上的速率自适应进行了系统的和实验性的研究。我们的主要贡献是双重的。首先,我们对大多数现有算法采用的五项设计准则进行了评论。我们的研究表明,这些看似正确的准则在实践中可能会产生误导,因此在某些情况下会导致明显的性能损失。根本的挑战是,尽管存在由衰落,移动性和隐藏终端引起的各种动态变化,速率适配仍必须准确地估计信道状况。其次,我们设计并实现了一种新的鲁棒速率自适应算法(RRAA),以解决上述挑战。 RRAA使用短期损耗率来机会地指导其速率变化决策,并使用自适应RTS滤波器来防止碰撞损耗触发速率降低。我们广泛的实验表明,在所有测试的场景中,RRAA均优于三种著名的速率自适应解决方案(ARF,AARF和SampleRate),吞吐量提高了143%。

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