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Impact of Radio Irregularity on Wireless Sensor Networks

机译:无线电不规则对无线传感器网络的影响

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In this paper, we investigate the impact of radio irregularity on the communication performance in wireless sensor networks. Radio irregularity is a common phenomenon which arises from multiple factors, such as variance in RF sending power and different path losses depending on the direction of propagation. From our experiments, we discover that the variance in received signal strength is largely random; however, it exhibits a continuous change with incremental changes in direction. With empirical data obtained from the MICA2 platform, we establish a radio model for simulation, called the Radio Irregularity Model (RIM). This model is the first to bridge the discrepancy between spherical radio models used by simulators and the physical reality of radio signals. With this model, we are able to analyze the impact of radio irregularity on some of the well-known MAC and routing protocols. Our results show that radio irregularity has a significant impact on routing protocols, but a relatively small impact on MAC protocols. Finally, we propose six solutions to deal with radio irregularity. We evaluate two of them in detail. The results obtained from both the simulation and a running testbed demonstrate that our solutions greatly improve communication performance in the presence of radio irregularity.
机译:在本文中,我们研究了无线电不规则对无线传感器网络中通信性能的影响。无线电不规则是一种常见现象,它由多种因素引起,例如,RF发送功率的差异以及取决于传播方向的不同路径损耗。从我们的实验中,我们发现接收信号强度的方差在很大程度上是随机的。但是,随着方向的不断变化,它呈现出连续的变化。利用从MICA2平台获得的经验数据,我们建立了一个用于仿真的无线电模型,称为无线电不规则模型(RIM)。该模型是第一个弥合模拟器使用的球形无线电模型与无线电信号的物理现实之间的差异的模型。使用此模型,我们能够分析无线电不规则对一些众所周知的MAC和路由协议的影响。我们的结果表明,无线电不规则对路由协议具有重大影响,但对MAC协议的影响相对较小。最后,我们提出了六种解决无线电不规则的解决方案。我们将详细评估其中两个。从仿真和正在运行的试验台上获得的结果表明,在存在无线电不规则性的情况下,我们的解决方案极大地提高了通信性能。

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