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Underground Wireless Data Transmission Using 433-MHz LoRa for Agriculture

机译:使用433 MHz LoRa进行农业地下无线数据传输

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摘要

Wireless underground sensor networks (WUSNs) have potential for providing real-time data for agriculture and other industries without exposing sensors and communication infrastructure to damage. However, soil is a difficult environment for radio communication due to its dielectric properties and variable moisture content. Low-power, wide-area network (LPWAN) technologies have been used to develop aboveground sensor networks for many industries, but have not yet been successfully developed for underground applications. In this study, we developed a 433-MHz LoRa-based testbed for evaluating both underground-to-underground (UG2UG) and underground-to-aboveground (UG2AG) wireless communication technologies in four in situ soils. The maximum transmission distance for UG2UG operation was 4–20 m depending on soil type, whilst UG2AG operation was able to communicate up to 100–200 m, depending on the operating variables and soil properties. Signal quality and the maximum transmission distance were influenced by transmitter (TX) burial depth, TX power, data rate, receiver (RX) antenna type, and to a lesser extent, soil parameters. Results suggest that with improvements to power management, the development of 433-MHz LoRa-based UG2AG WUSNs for agricultural applications is readily achievable, whilst UG2UG applications appear unlikely without substantial improvement in transmission distance.
机译:无线地下传感器网络(WUSN)具有为农业和其他行业提供实时数据的潜力,而不会使传感器和通信基础设施遭受破坏。然而,由于土壤的介电特性和可变的水分含量,土壤是无线电通信的困难环境。低功耗广域网(LPWAN)技术已用于许多行业的地上传感器网络的开发,但尚未成功开发用于地下应用。在这项研究中,我们开发了一种基于433 MHz LoRa的测试平台,用于评估四种原位土壤中的地下到地下(UG2UG)和地下到地上(UG2AG)无线通信技术。 UG2UG操作的最大传输距离为4–20 m,具体取决于土壤类型,而UG2AG操作的最大传输距离可达100–200 m,具体取决于操作变量和土壤特性。信号质量和最大传输距离受发射器(TX)埋深,发射功率,数据速率,接收器(RX)天线类型以及土壤参数的影响较小。结果表明,随着电源管理的改进,很容易实现用于农业应用的基于433 MHz LoRa的UG2AG WUSN的开发,而如果不大幅提高传输距离,则UG2UG应用似乎不太可能。

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