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LoRa LPWAN Propagation Channel Modelling in IIUM Campus

机译:Lora LPWAN传播信道建模在最爱校园

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LoRa, one of the most outstanding low power wide area network (LPWAN) technology has unique and remarkable features. Because of its long-range coverage, low power consumption and low cost system architecture, Lora WAN has becoming a favorable option for performing communication in most of IoT wireless applications. This project aimed at quantifying the foliage effect in terms of attenuation and its overall contribution to the path-loss and link budget calculations. Specifically, five tree types were studied and their contribution to the path loss were quantified for different path crossings (e.g., trunk, tree-top and branches). The trees are Licuala Grandis, Mimusops Elengi, Mangifera Indica, Cyrtostachys Renda and Livistona Chinensis. Mimusops Elengi tree, characterized by its big size and crown density, gave the strongest mean foliage attenuation accumulating up to 20 dB. Trunks contribute even higher attenuation in comparison to tree-tops and branches. The Okumura/Hata, Log-normal shadowing and foliage models are used as references for this propagation models development. Our study showed that Okumura fails to capture the effect of foliage in International Islamic University Malaysia, Gombak campus that is rich in trees. This goes to illustrate the necessity for considering the tropical environment where the characterization of foliage attenuation plays an important role in determining the propagation model path-loss and link budget needed for LoRa network design and planning.
机译:LORA是最出色的低功耗广域网(LPWAN)技术之一具有独特而显着的功能。由于其远程覆盖范围,低功耗和低成本系统架构,Lora WAN在大多数IoT无线应用程序中进行了有利的选择。该项目旨在在衰减方面衡量叶子效应及其对路径损失和链接预算计算的总体贡献。具体地,研究了五种树类型,对不同的路径交叉量(例如,躯干,树顶和分支)量化了它们对路径损失的贡献。树木是LiCuala Grandis,Mimusops Elengi,Mangifera indica,Cyrtostachys Renda和Livistona Chinensis。以其大尺寸和冠密度为特征,使最强的平均衰减累积高达20 dB。与树顶和分支相比,树干有助于更高的衰减。 Okumura / Hata,Log-Normal Shadows和Foriage Models用作此传播模型开发的参考。我们的研究表明,Okumura未能捕捉叶子在富裕的佛罗伦布校园中的叶子中的叶子。这是为了说明考虑到叶子衰减的表征的热带环境在确定Lora网络设计和规划所需的传播模型路径损失和链路预算方面发挥着重要作用的必要性。

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