首页> 外文期刊>Biosystems Engineering >Influence of foliage on radio path losses (PLs) for wireless sensor network (WSN) planning in orchards. (Special Issue: Sensing technologies for sustainable agriculture.)
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Influence of foliage on radio path losses (PLs) for wireless sensor network (WSN) planning in orchards. (Special Issue: Sensing technologies for sustainable agriculture.)

机译:对于果园中的无线传感器网络(WSN)规划,枝叶对无线路径损耗(PLs)的影响。 (特刊:可持续农业的传感技术。)

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Radio propagation within a plum orchard was investigated using ZigBee devices operating within the 2.4 GHz band. Measurements were performed to estimate power attenuation due to the presence of trees and their foliage. Radio path loss (PL) measurements, with and without leaves, revealed that at antennas heights close to the tree tops the PL was not affected significantly by the presence of tree leaves, mainly because of diffraction from the tree canopy-air interface, which provided an additional propagation mode. At antenna heights where foliage takes up a significant portion of the propagation path the attenuation was increased in the presence of leaves. However, at 2.4 GHz this effect was not severe mainly because the corresponding wavelength is greater than the average leaf size of the plum tree. An approach was carried out to characterise empirical data by means of established vegetation-attenuation models. The most accurate model for the particular orchard layout was the parametric exponential decay (PED) model using parameters best-fitted to the measurements, whereas the second-best was the standard Weissberger exponential decay model, which does not require any parameter fitting. Also, several standard exponential decay models which have been developed for forest environments can be used as 'conservative' upper bounds of PL, at least for the particular orchard. These models can also be used for the prediction of range between wireless sensor network (WSN) nodes in orchards, since range can be defined as the distance over which the received power drops below the known sensitivity of the receiver.
机译:使用在2.4 GHz频带内运行的ZigBee设备研究了李子园内的无线电传播。进行测量以估计由于树木及其枝叶的存在而导致的功率衰减。有叶和无叶的无线电路径损耗(PL)测量表明,在靠近树顶的天线高度处,PL不受叶的存在影响不明显,主要是因为树冠-空气界面的衍射附加传播模式。在树叶占据传播路径很大一部分的天线高度处,存在叶子时衰减会增加。但是,在2.4 GHz时,这种影响并不严重,主要是因为相应的波长大于李子树的平均叶大小。通过建立的植被衰减模型,进行了表征经验数据的方法。对于特定的果园布局,最准确的模型是使用最适合测量的参数的参数指数衰减(PED)模型,而第二好的是标准的Weissberger指数衰减模型,该模型不需要任何参数拟合。而且,至少对于特定的果园,已经为森林环境开发的几种标准指数衰减模型可以用作PL的“保守”上限。这些模型还可以用于预测果园中的无线传感器网络(WSN)节点之间的距离,因为范围可以定义为接收功率下降到接收器的已知灵敏度以下的距离。

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