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An experimental LoRa performance evaluation in tree farm

机译:林场中LoRa性能的实验评估

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Deployment of internet of things (IoT) devices, wireless sensors, and sensor networks, in agriculture can be a great help in monitoring environment and growing crops; and having a network to support those devices is necessary to successfully utilize those resources. Recently, low-power wide area network (LPWAN) have been recognized as an appropriate technology for agriculture use. LoRa is a representative network of low-power wide area network (LPWAN). It can be applied to IoT for agriculture due to its long range and low power capabilities. LoRa network performance is highly affected by physical layer parameters and the environment. While LPWANs have been around for a number of years, they are still considered an emerging technology and have had few scientific studies performed. Currently, most studies have shown LoRa communication capabilities in urban, mountainous, and maritime areas, with little focus on agriculture use cases. Tree farming is a long-term investment, requiring careful monitoring to mitigate loss; therefore, this paper provides an analysis about the impact of variant physical layer parameters on performance of LoRa networks in a tree farm. Overall, the LoRa communication range was smaller than the theoretically expected range. Some PHY factors, spreading factor and coding rate, showed a clear impact on LoRa performance. Actual data reliability was inconsistent at varying distances and PHY configurations, unlike the consistency found in the RSSI reported by the radios. Additional experiments show the Fresnel Zone still affects LoRa networks. All experiments were performed in an Indiana rural tree plantation in the United States. Each node was set differently by modulating spreading factor, bandwidth and coding rate using 915MHz and 13 dBm transmit power at variant distance.
机译:在农业中部署物联网(IoT)设备,无线传感器和传感器网络可以为监控环境和农作物提供巨大帮助;并且拥有一个网络来支持那些设备对于成功利用那些资源是必要的。最近,低功率广域网(LPWAN)已被公认为是适合农业使用的技术。 LoRa是低功耗广域网(LPWAN)的代表网络。由于其远距离和低功率功能,它可以应用于农业物联网。 LoRa网络性能在很大程度上受物理层参数和环境的影响。 LPWAN已经存在了很多年,但它们仍然被认为是一种新兴技术,几乎没有进行科学研究。当前,大多数研究表明LoRa在城市,山区和海洋地区的通信能力,而很少关注农业用例。树木种植是一项长期投资,需要认真监测以减轻损失;因此,本文提供了有关变体物理层参数对林场中LoRa网络性能的影响的分析。总体而言,LoRa通信范围小于理论上的预期范围。一些PHY因子,扩频因子和编码率对LoRa性能表现出明显的影响。实际的数据可靠性在不同的距离和PHY配置下不一致,这与无线电报告的RSSI中的一致性不同。其他实验表明,菲涅耳区仍会影响LoRa网络。所有实验均在美国印第安纳州的一个乡村人工林中进行。通过在不同距离使用915MHz和13 dBm发射功率调制扩频因子,带宽和编码率,可以对每个节点进行不同的设置。

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