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Novel soil environment monitoring system based on RFID sensor and LoRa

机译:基于RFID传感器和Lora的新型土壤环境监测系统

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摘要

This work proposes a novel soil environment monitoring system based on RFID sensor and LoRa to realize long term and low cost monitoring. The monitoring system consists of patrol car, RFID sensor, farmland monitoring center and cloud platform. The proposed patrol car is responsible for collecting the information of embedded RFD sensors and communicate with the monitoring center through LoRa. The proposed RFID sensor is comprised of a power management section, a communication section, and a digital section. The power management section employs a whip antenna for energy harvesting, and a novel boost rectifier, consisting of a single stage rectifier and a DC-DC charge pump, is introduced to rectify the harvested RF power for high efficiency. A voltage regulator is used to generate a stable DC voltage supply. In the communication section, a novel monopole antenna is propose to minimize the size of antenna. It can be concluded from the experimental results that our RFID sensor can work under the maximum communication distance of 1.3 m. The errors of the measured temperature and moisture content are 1.5% and 1.0% respectively when the embedding depth of RFID sensor is 60 cm and the moisture content of soil is smaller than 30%. The optimum speed of patrol car is 33 km/h when the communication success rate is above 90% and the coverage area is above 10 km(2).
机译:这项工作提出了一种基于RFID传感器和LORA的新型土壤环境监测系统,实现长期和低成本监测。监控系统由巡逻车,RFID传感器,农田监测中心和云平台组成。拟议的巡逻车负责收集嵌入式RFD传感器的信息,并通过LORA与监控中心通信。所提出的RFID传感器包括电源管理部分,通信部分和数字部分。电源管理部分采用用于能量收集的鞭状天线,并引入由单级整流器和DC-DC电荷泵组成的新型升压整流器,以整流收获的RF功率以获得高效率。电压调节器用于产生稳定的直流电压。在通信部分中,提出了一种新颖的单极天线以最小化天线的大小。可以从实验结果结束,因为我们的RFID传感器可以在1.3米的最大通信距离下工作。当RFID传感器的嵌入深度为60厘米时,测量温度和水分含量的误差分别为1.5%和1.0%,土壤的水分含量小于30%。当通信成功率高于90%时,巡逻车的最佳速度为33 km / h,覆盖面积高于10公里(2)。

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