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首页> 外文期刊>Computer communication review >Predictable 802.11 Packet Delivery from Wireless Channel Measurements
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Predictable 802.11 Packet Delivery from Wireless Channel Measurements

机译:无线信道测量可预测的802.11数据包传递

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RSSI is known to be a fickle indicator of whether a wireless link will work, for many reasons. This greatly complicates operation because it requires testing and adaptation to find the best rate, transmit power or other parameter that is tuned to boost performance. We show that, for the first time, wireless packet delivery can be accurately predicted for commodity 802.11 NICs from only the channel measurements that they provide. Our model uses 802.11n Channel State Information measurements as input to an OFDM receiver model we develop by using the concept of effective SNR. It is simple, easy to deploy, broadly useful, and accurate. It makes packet delivery predictions for 802.11a/g SISO rates and 802.11n MIMO rates, plus choices of transmit power and antennas. We report testbed experiments that show narrow transition regions (<2 dB for most links) similar to the near-ideal case of narrowband, frequency-flat channels. Unlike RSSI, this lets us predict the highest rate that will work for a link, trim transmit power, and more. We use trace-driven simulation to show that our rate prediction is as good as the best rate adaptation algorithms for 802.11a/g, even over dynamic channels, and extends this good performance to 802.11n.
机译:出于多种原因,众所周知,RSSI是无线链接是否有效的不可靠指标。这极大地使操作复杂化,因为需要进行测试和调整才能找到最佳速率,发射功率或其他为提高性能而调整的参数。我们展示,这是第一次,仅通过商品802.11 NIC所提供的信道测量结果,就可以准确地预测其无线分组传输。我们的模型使用802.11n信道状态信息测量值作为我们通过使用有效SNR概念开发的OFDM接收机模型的输入。它简单,易于部署,广泛有用且准确。它可以预测802.11a / g SISO速率和802.11n MIMO速率的数据包传输,并选择发射功率和天线。我们报告了测试平台实验,这些实验显示出狭窄的过渡区域(大多数链路<2 dB),类似于窄带,平坦频率信道的近乎理想的情况。与RSSI不同,这使我们能够预测适用于链路的最高速率,调整发射功率等等。我们使用跟踪驱动的仿真表明,即使在动态信道上,我们的速率预测也与802.11a / g的最佳速率自适应算法一样好,并将这种良好的性能扩展到802.11n。

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