首页> 外文会议>Proceedings of the 2005 ACM SIGCOMM workshop on Experimental approaches to wireless network design and analysis >Experimental investigation of PHY layer rate control and frequency selection in 802.11-based ad-hoc networks
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Experimental investigation of PHY layer rate control and frequency selection in 802.11-based ad-hoc networks

机译:基于802.11的ad-hoc网络中PHY层速率控制和频率选择的实验研究

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This paper presents an experimental investigation of the performance impact of two important PHY layer design options that arise in 802.11 ad-hoc networks. In particular, throughput results are provided for multi-hop ad-hoc networks with and without PHY auto-rate control and for single vs. multiple frequencies. The study is motivated by the fact that default 802.11-based ad-hoc networks using commercially preset auto-rate PHY and a single frequency channel suffer from performance degradations caused by link quality fluctuations and MAC layer self-interference respectively. A baseline ad-hoc network scenario is set up on the ORBIT radio grid testbed at Rutgers and is used to determine end-to-end multi-hop flow throughput with default rate control and single channel operation. These results are then compared with those obtained with multiple channels and alternative PHY-rate selection methods demonstrating the potential for significant performance improvements. We observed significant improvements in end-to-end flow throughput, as much as 4x for multiple channel vs. single channel and 3x for optimally controlled PHY rate vs auto-rate.
机译:本文对802.11 ad-hoc网络中出现的两个重要PHY层设计选项的性能影响进行了实验研究。特别是,为具有和不具有PHY自动速率控制的多跳自组织网络提供了吞吐量结果,并提供了单频或多频。该研究的动机是以下事实:使用商业预设的自动速率PHY和单个频率信道的默认基于802.11的自组织网络分别遭受链路质量波动和MAC层自干扰导致的性能下降。在罗格斯(Rutgers)的ORBIT无线电网格试验台上建立了基准临时网络方案,该方案用于确定具有默认速率控制和单通道操作的端到端多跳流吞吐量。然后将这些结果与通过多通道和其他PHY速率选择方法获得的结果进行比较,证明了显着提高性能的潜力。我们观察到端到端流吞吐量的显着提高,多通道与单通道相比提高了4倍,最佳控制PHY速率与自动速率相比提高了3倍。

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