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Analysis of LoRa Parameters in Real-World Communication

机译:实际通信中的LoRa参数分析

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Low Power Wide Area Network (LP-WAN) technologies found their usage in the Internet of Things (IoT) systems due to their low power consumption and long-range, with low data rates as a compromise. One of the most utilized LP-WAN technologies that operates in unlicensed spectrum is LoRa (Long Range). The description of other LP-WAN technologies (Narrowband IoT, Sigfox, and LTE-M) and their comparison with LoRa are presented in the paper. Operating in an unlicensed spectrum makes the possibility of the interference grow, which is handled by LoRa’s chirp spread spectrum modulation. In LoRa communication, spreading factor (SF) has the most impact on energy consumption, time on air, and coverage area. Influence of the SF on communication parameters such as signal-to-noise ratio (SNR), received signal strength indicator (RSSI) and time on air (ToA) is analyzed using over 6500 LoRa messages gathered in the test network in Croatia. The analysis results showed the dependencies between SF, RSSI, and SNR and between theoretical ToA and the measured one.
机译:低功耗广域网(LP-WAN)技术因其低功耗和长距离以及低数据速率而在物联网(IoT)系统中得到了使用。 LoRa(长距离)是在无执照频谱中使用最广泛的LP-WAN技术之一。本文介绍了其他LP-WAN技术(窄带物联网,Sigfox和LTE-M)及其与LoRa的比较。使用LoRa的线性调频扩频调制技术可以解决在未经许可的频谱中进行操作而导致干扰增加的可能性。在LoRa通信中,扩频因子(SF)对能源消耗,广播时间和覆盖区域的影响最大。使用在克罗地亚的测试网络中收集的6500多个LoRa消息,分析了SF对通信参数的影响,例如信噪比(SNR),接收信号强度指示器(RSSI)和广播时间(ToA)。分析结果显示了SF,RSSI和SNR之间以及理论ToA与所测值之间的相关性。

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