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Comparison of Radio Frequency Path Loss Models in Soil for Wireless Underground Sensor Networks

机译:无线地下传感器网络中土壤中射频路径损耗模型的比较

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A wireless Underground Sensor Network (WUSN) is a group of sensors that collectively communicate through the underground medium. Radio Frequency (RF) signal transmission of the sensors through the ground is the most challenging aspects of a WUSN due to the high attenuation of the electromagnetic (EM) signal in the soil. Signals are often required to travel through soils with a high density or water content and generally through a non-isotropic and non-homogenous soil mixture with different boundaries, both of which can attenuate the signal sharply. The variability of the these conditions and complexity of the behaviour of signal attenuation with respect to these parameters makes accurate estimation of EM signal attenuation in soil challenging. Two main EM signal attenuation models exist to estimate attenuation (modified-Friis and Complex Refractive Index Model-Fresnel (CRIM-Fresnel). These were reviewed and a methodology was developed in order to measure the attenuation of the EM signals in the laboratory. Results from the laboratory measurements were compared with the estimation values calculated from the attenuation models. These comparisons showed a large difference between the estimated values by the models. In addition, analysis of the comparison tests showed that the CRIM-Fresnel model provides a better estimation of attenuation in samples with lower permittivity values while the modified-Friis model had a higher accuracy in samples with higher clay/water content which have higher permittivity values.
机译:无线地下传感器网络(WUSN)是一组通过地下介质共同通信的传感器。由于土壤中电磁(EM)信号的高度衰减,传感器通过地面的射频(RF)信号传输是WUSN最具挑战性的方面。通常需要信号穿过高密度或高含水量的土壤,并且通常穿过具有不同边界的非各向同性和非均质的土壤混合物,这两者都会使信号急剧衰减。这些条件的可变性以及信号衰减行为相对于这些参数的复杂性使得对土壤中的EM信号衰减进行精确估计成为可能。存在两种主要的电磁信号衰减模型来估计衰减(修正弗里斯和复折射率模型菲涅耳(CRIM-Fresnel)),并对其进行了审查,并开发了一种方法来测量实验室中电磁信号的衰减。将实验室测量得到的值与衰减模型计算出的估计值进行了比较,这些比较表明模型所得出的估计值之间存在较大差异,此外,对比较测试的分析表明,CRIM-Fresnel模型可以更好地估算较低的介电常数值的样品具有较高的衰减,而改进的Friis模型在具有较高介电常数值的粘土/水含量较高的样品中具有较高的精度。

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