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A systematic study on the impact of noise and OFDM interference on IEEE 802.11p

机译:系统研究噪声和OFDM干扰对IEEE 802.11p的影响

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To design, test, and evaluate applications for Vehicular Ad Hoc Networks (VANETs), researchers rely heavily on network simulations. These allow conducting experiments in a fast, cheap, and reproducible manner. In general, the accuracy of simulation results depends to a large degree on the quality of the simulation models. Here, the model of the physical layer is particularly crucial for the realism of the results. Given its relevance, it is unfortunate that there is a dispute within the community on how interference should be modeled. To fill this gap, we conduct a systematic study of the IEEE 802.11p physical layer in which we cross-validate results from simulations, off-the-shelf devices, and lab equipment. The results of these experiments are all coherent and indicate that intra-technology interference, i.e., interference from other IEEE 802.11p devices, has a similar impact than noise. Treating interference like noise is, therefore, not just a simplification that is adopted by many network simulators, but accurately captures reality.
机译:为了设计,测试和评估车载Ad Hoc网络(VANET)的应用程序,研究人员严重依赖于网络仿真。这些允许以快速,廉价和可重复的方式进行实验。通常,仿真结果的准确性在很大程度上取决于仿真模型的质量。在此,物理层的模型对于结果的真实性尤为重要。鉴于其相关性,不幸的是,社区内部对如何建模干扰存在争议。为了填补这一空白,我们对IEEE 802.11p物理层进行了系统的研究,在其中我们对来自仿真,现成设备和实验室设备的结果进行交叉验证。这些实验的结果是一致的,并且表明技术内干扰,即来自其他IEEE 802.11p设备的干扰,其影响与噪声相似。因此,像噪声一样对待干扰不仅是许多网络模拟器所采用的简化方法,而且还可以准确地捕获现实情况。

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