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Measurement-Based Path Loss and Delay Spread Propagation Models in VHF/UHF Bands for IoT Communications

机译:用于物联网通信的VHF / UHF频段中基于测量的路径损耗和延迟扩展传播模型

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Internet of Things (IoT) holds a great promise in providing autonomous and ubiquitous connectivity between devices in future communication systems. Due to the spectrum scarcity, very high frequency (VHF) and ultra high frequency (UHF) bands are viewed as valuable resources for IoT communications, especially to connect to distant locations that are hard to reach using higher frequencies. Existing propagation models in the VHF/UHF frequency bands are mainly for broadcasting and cellular systems with high transmit antenna heights, and hence, they are not suitable for IoT communications characterized by low antenna heights at both the transmitter and receiver. In this paper, we present new statistical path loss and delay spread models for IoT communications based on quasi-simultaneous wideband channel measurements conducted in the VHF/UHF frequency bands (from 37.8 to 370 MHz) at the city of Halifax, Canada. In particular, we present two log-distance path loss models (frequency-independent path loss exponent and frequency- dependent path loss exponent), as well as, a new statistical distribution of the delay spread.
机译:物联网(IoT)在为未来的通信系统中的设备之间提供自主和无所不在的连接方面具有广阔的前景。由于频谱稀缺,非常高的频率(VHF)和超高频(UHF)频段被视为物联网通信的宝贵资源,尤其是连接到难以使用更高频率到达的遥远位置。 VHF / UHF频带中的现有传播模型主要用于具有高发射天线高度的广播和蜂窝系统,因此,它们不适合在发射器和接收器处都具有低天线高度的IoT通信。在本文中,我们基于在加拿大哈利法克斯市的VHF / UHF频带(37.8至370 MHz)中进行的准同时​​宽带信道测量,介绍了IoT通信的新统计路径损耗和延迟扩展模型。特别是,我们提出了两个对数距离路径损耗模型(与频率无关的路径损耗指数和与频率有关的路径损耗指数),以及时延扩展的新统计分布。

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