Development of the Internet of Smart Orchard Things Based on Multi-Sensors and LoRa Technology

被引:0
作者
Zhang P. [1 ]
Chen X. [1 ]
Li S. [1 ]
Zhang C. [1 ]
Hu Y. [1 ]
机构
[1] School of Computer Science and Technology, Henan Institute of Science and Technology, Xinxiang
来源
Intelligent and Converged Networks | 2023年 / 4卷 / 04期
关键词
Internet of Things; LoRa; multi-sensors; sensor network; smart orchard;
D O I
10.23919/ICN.2023.0028
中图分类号
学科分类号
摘要
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. © articles included in the journal are copyrighted to the ITU and TUP.
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页码:342 / 354
页数:12
相关论文
共 30 条
[1]  
Gebbers R., Adamchuk V.I., Precision agriculture and food security, Science, 327, 5967, pp. 828-831, (2010)
[2]  
Ferrandez-Pastor F.J., Garcia-Chamizo J.M., Nieto-Hidalgo M., Mora-Pascual J., Mora-Martinez J., Developing ubiquitous sensor network platform using Internet of Things: Application in precision agriculture, Sensors, 16, 7, (2016)
[3]  
Kopetz H., Internet of things, Real-Time Systems, pp. 307-323, (2011)
[4]  
Zhang P., Liu Y., Bai Q., Qu P., Guo X., Zhang Q., Bai L.L., Sun Z.H., Deng J., Design of Internet of orchard Things based on improving fruit quality by lowering night temperature in ripening period, (in Chinese), J. Xinyang Norm. Univ. (Nat. Sci. Ed.)., 32, 4, pp. 659-663, (2019)
[5]  
Zhang W., Research on Key Technologies of Wireless Sensor Networks for Precision Agriculture, (2013)
[6]  
Mao S., Zhang W., Xu Y., Intelligent irrigation controller, (in Chinese), Sprink. Irrig. Technol., 1995, 2, pp. 31-34, (1995)
[7]  
Liang Y., Research on Orchid Information Systems Based on Remote Monitoring, (2018)
[8]  
Yang W.Z., Sun D.Z., Liu J.M., Gao P., Yao G.D., Lai J.G., Wang W.X., Citrus irrigation expert system based on Internet of Things and artificial intelligence, (in Chinese), Water Sav. Irrig., 2019, 9, pp. 116-120, (2019)
[9]  
Fu P.Y., Zhou J.Z., Zhou Q.Y., Liu Y.H., Wang Z.W., Design of campus building environmental monitoring system based on LoRa, (in Chinese), Autom. Instrum., 34, pp. 66-70, (2019)
[10]  
Parra M.J.T., El Ministro Lora Tamayo y la Universidad, (2021)