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Effects of Correlated Shadowing Modeling on Performance Evaluation of Wireless Sensor Networks

机译:相关阴影建模对无线传感器网络性能评估的影响

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摘要

Wireless links are typically modeled in isolation as independent and parallel links. However, in reality, there is often a correlation in defects and impairments between collocated links. The spatial correlation of shadowing among proximate wireless links has been frequently observed. Although different types of correlated shadowing models have been proposed for wireless channels, these models are not present in popular network simulators. Ignoring such correlations results in the diversity of adjacent links being over- estimated. Our hypothesis is that this could lead to incorrect results when evaluating the performance of wireless systems and network protocols. In this paper, the ns-3 simulation environment has been enhanced with a prototype correlated shadowing model developed in our previously published work. We study the end-to-end packet delivery ratio and delay in wireless sensor networks using both correlated and independent propagation models. Simulation results show that correlated and independent shadowing models produce significant differences in network performance. Moreover, we compare the complexity of different modeling options. It is shown that this correlated propagation model in ns-3 can improve simulation realism without inducing any considerable degradation of scalability.
机译:无线链接通常独立地建模为独立和并行链接。但是,实际上,并置链接之间的缺陷和损害通常存在关联。经常观察到邻近无线链路之间的阴影的空间相关性。尽管已经为无线信道提出了不同类型的相关阴影模型,但是这些模型在流行的网络模拟器中并不存在。忽略这种相关性会导致相邻链路的多样性被高估。我们的假设是,在评估无线系统和网络协议的性能时,这可能导致错误的结果。在本文中,ns-3仿真环境已通过在我们先前发表的工作中开发的原型相关阴影模型得到了增强。我们使用相关和独立的传播模型来研究无线传感器网络中的端到端数据包传输率和延迟。仿真结果表明,相关和独立的阴影模型在网络性能上产生了显着差异。此外,我们比较了不同建模选项的复杂性。结果表明,在ns-3中,这种相关的传播模型可以提高仿真的真实性,而不会引起可伸缩性的任何显着降低。

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