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基于STM32嵌入式微处理器的农业气象物联网数据采集系统设计 被引量:25
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作者 韩琛晔 《现代电子技术》 北大核心 2020年第5期10-13,18,共5页
为了提高农业气象数据观测可靠性、实时性与精准性,设计基于STM32嵌入式微处理器的农业气象观测系统。此系统通过物联网技术实现局部区域中的多点气象数据收集,并且对基站传输数据。利用基站传输能够使主监控机监控软件中展示节点数据,... 为了提高农业气象数据观测可靠性、实时性与精准性,设计基于STM32嵌入式微处理器的农业气象观测系统。此系统通过物联网技术实现局部区域中的多点气象数据收集,并且对基站传输数据。利用基站传输能够使主监控机监控软件中展示节点数据,并且对节点数据进行归类存储。主控软件利用机房的Internet网络,能够使数据传输到远程客户端中。系统还具备全球移动通信系统的移动报警功能,客户能够对报警信息进行收集。此系统能够应用到远程与室内局部多点气象信息收集监控领域中,通过系统测试表示,终端收集节点对网关传输数据距离不超过100 m,整体网络平均丢包率不超过2.6%,使大棚内空气湿度、温度、光照强度和土壤湿度的需求得到满足。 展开更多
关键词 农业气象 物联网数据采集 嵌入式微处理器 环境数据收集 系统设计 软件设计
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Factors Acquisition and Content Estimation of Farmland Soil Organic Carbon Based upon Internet of Things 被引量:1
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作者 WU Qiulan LIANG Yong +3 位作者 LI Ying WANG Xizhi YANG Lei WANG Xiaotong 《Chinese Geographical Science》 SCIE CSCD 2017年第3期431-440,共10页
Aiming at the shortage of sufficient continuous parameters for using models to estimate farmland soil organic carbon(SOC) content, an acquisition method of factors influencing farmland SOC and an estimation method of ... Aiming at the shortage of sufficient continuous parameters for using models to estimate farmland soil organic carbon(SOC) content, an acquisition method of factors influencing farmland SOC and an estimation method of farmland SOC content with Internet of Things(IOT) are proposed in this paper. The IOT sensing device and transmission network were established in a wheat demonstration base in Yanzhou Distict of Jining City, Shandong Province, China to acquire data in real time. Using real-time data and statistics data, the dynamic changes of SOC content between October 2012 and June 2015 was simulated in the experimental area with SOC dynamic simulation model. In order to verify the estimation results, potassium dichromate external heating method was applied for measuring the SOC content. The results show that: 1) The estimated value matches the measured value in the lab very well. So the method is feasible in this paper. 2) There is a clear dynamic variation in the SOC content at 0.2 m soil depth in different growing periods of wheat. The content reached the highest level during the sowing period, and is lowest in the flowering period. 3) The SOC content at 0.2 m soil depth varies in accordance with the amount of returned straw. The larger the amount of returned straw is, the higher the SOC content. 展开更多
关键词 Internet of Things(IOT) soil organic carbon(SOC) factors acquisition SOC content estimation Soil-C model
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