Improving the ns-3 TraceBasedPropagationLossModel to support multiple access wireless scenarios

Helder Fontes, Rui Campos, M. Ricardo
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引用次数: 8

Abstract

In wireless networking R&D we typically depend on experimentation to further evaluate a solution, as simulation is inherently a simplification of the real-world. However, experimentation is limited in aspects where simulation excels, such as repeatability and reproducibility. Real wireless experiments are hardly repeatable. Given the same input they can produce very different output results, since wireless communications are influenced by external random phenomena such as noise, interference, and multipath. Real experiments are also difficult to reproduce due to testbed operational constraints and availability. We have previously proposed the Trace-based Simulation (TS) approach, which uses the TraceBasedPropagationLossModel to successfully reproduce past experiments. Yet, in its current version, the TraceBasedPropagationLossModel only supports point-to-point scenarios. In this paper, we introduce a new version of the model that supports Multiple Access wireless scenarios. To validate the new version of the model, the network throughput was measured in a laboratory testbed. The experimental results were then compared to the network throughput achieved using the ns-3 trace-based simulation and a pure ns-3 simulation, confirming the TS approach is valid for multiple access scenarios too.
改进ns-3 TraceBasedPropagationLossModel以支持多址无线场景
在无线网络研发中,我们通常依靠实验来进一步评估解决方案,因为仿真本质上是对现实世界的简化。然而,实验在模拟擅长的方面是有限的,比如可重复性和可再现性。真正的无线实验很难重复。给定相同的输入,它们可以产生非常不同的输出结果,因为无线通信受到外部随机现象(如噪声、干扰和多径)的影响。由于测试平台的操作限制和可用性,真实的实验也很难重现。我们之前提出了基于跟踪的模拟(TS)方法,该方法使用TraceBasedPropagationLossModel成功地再现了过去的实验。然而,在其当前版本中,TraceBasedPropagationLossModel仅支持点对点场景。在本文中,我们介绍了一个支持多址无线场景的新版本模型。为了验证新版本的模型,在实验室测试平台上测量了网络吞吐量。然后将实验结果与基于ns-3跟踪仿真和纯ns-3仿真获得的网络吞吐量进行了比较,证实了TS方法在多址场景下也是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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