基于多传感器和 LoRa 技术的智能果园物联网开发

Pingchuan Zhang;Xu Chen;Shan Li;Caihong Zhang;Yanjun Hu
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摘要

随着科学技术的飞速发展,物联网(IoT)技术日趋成熟,吸引了众多研究人员的关注。农业现代化的发展导致智能化管理逐渐兴起,逐渐在农业生产中扎根。在物联网技术的众多技术中,低功耗广域网(WAN)技术具有传输可靠稳定、传输距离远、功耗低等特点。这对于特殊环境下的数据传输,尤其是山区果园的数据传输非常有用。本文提出了一种新型的果园管理农业物联网,它基于多传感器,如温度/湿度传感器 DHT11 和光照传感器 GY-30,利用长距离(LoRa)技术在终端和数据云中心之间传输采集的数据或控制指令等。在果园中设置低功耗物联网传感器网络,可以远程测量果园中的参数。LoRa 广域网用于向中心节点传输数据。为了降低功耗和成本,单个监测节点选择太阳能电源和电源两种供电方式,特殊情况下用户可远程开启电源。在桃园不同环境下的实验表明,该监测系统具有足够的可靠性和准确性,适用于偏远地区或地形复杂地区的果园环境监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of the Internet of Smart Orchard Things Based on Multi-Sensors and LoRa Technology
With the rapid growth of science and technology, the Internet of Things (IoT) technology has matured and attracted the attention of many researchers. The development of agricultural modernization leads to the gradual emergence of intelligent management gradually taking root in agricultural production. Among many technologies in the IoT technologies, low-power Wide Area Network (WAN) technology has the characteristics of reliable and stable transmission with long distance and low power consumption. This is very useful for data transmission in special environments, especially for orchards in mountainous areas. This paper proposed a new agricultural Internet of Things in orchard management based on multi-sensors, such as DHT11 for temperature/humidity and GY-30 for illumination, the Long Range (LoRa) technology for transmitting the collected data or control command between the terminal and data cloud center, etc. Setting a low-power IoT sensor network in the orchard can remotely measure the parameters in the orchard. LoRa WAN is used to transmit data to the central node. In order to reduce power consumption and cost, a single monitoring node selects two power supplies, a solar power supply and a power supply, and the power supply can be turned on remotely by users in special circumstances. Experiments in different environments in the peach orchard show that the monitoring system has enough reliability and accuracy, and is suitable for environmental monitoring in orchards in remote areas or areas with complex terrain.
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