用于智能农业应用的超高频物联网湿度和温度传感器,由能量收集系统供电

Adnan Nadeem, David Chatzichristodoulou, Abdul Quddious, N. Shoaib, L. Vassiliou, P. Vryonides, S. Nikolaou
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引用次数: 1

摘要

本文介绍了一种新型的UHF物联网湿度和温度传感器模块,该模块由集成能量收集(EH)系统供电。该模块用于智能农业应用。传感模块由收集的射频能量供电,该能量由工作在915 MHz(美国UHF频段)的弯曲单极天线收集,因此不需要使用电池。整流倍压器将接收到的射频能量转换成直流电,而电源管理单元(PMU)升压并存储整流电压,为RFID标签IC (ROCKY100)提供1.8V的稳压输出电压,为微控制器单元(MCU)和湿度和温度传感器IC提供3.3V的稳压输出电压。通信RFID天线使用以868 MHz为中心的欧洲UHF频段。当RFID标签IC从PMU提供1.8 V时,它以半被动模式工作,有效地增加了其通信范围。ROCKY100符合EPC C1G2标准,并与功率采集模块和SPI通信兼容,以支持外部低功耗传感器和执行器。此外,电容式数字湿度和温度传感器(HTS221)被用作土壤测量的传感模块。测量土壤相对湿度和温度的过程由德克萨斯仪器混合信号微控制器控制,该微控制器具有两个SPI接口,允许它与RFID IC和传感器并行通信。在接收到来自RFID读取器的SPI定向读取请求后,ROCKY100 SPI桥接器请求来自微控制器的最后测量值,并将HTS221 IC所采取的湿度和温度测量值发送到RFID读取器。使用收集的无线能量作为电源,使演示的模块有可能成为无电池的,因此是一个“绿色”传感器。
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UHF IoT Humidity and Temperature Sensor for Smart Agriculture Applications Powered from an Energy Harvesting System
This manuscript presents a novel UHF IoT humidity and temperature sensor module that is powered from an integrated energy harvesting (EH) system. The module is intended for smart agriculture applications. The sensing module is powered from the collected RF energy that is harvested by a meander monopole antenna operating at 915 MHz (US UHF band) and therefore the use of a battery is not required. The rectifying voltage doubler converts the received RF energy into DC while the Power Management Unit (PMU) boosts-up and stores the rectified voltage providing a regulated output voltage of 1.8V to the RFID tag IC (ROCKY100) and 3.3V to the microcontroller unit (MCU) and the humidity and temperature sensor IC. The communication RFID antenna uses the European UHF frequency band centered at 868 MHz. When the RFID tag IC is supplied with 1.8 V from the PMU it operates in semi-passive mode and it effectively increases its communication range. The ROCKY100 is EPC C1G2 compliant and is compatible with power harvesting modules and SPI communication to support external low-power sensors and actuators. In addition, a capacitive digital humidity and temperature sensor (HTS221) is used as the sensing module for soil measurements. The process of measuring the relative humidity and temperature of the soil is controlled with a Texas Instrument mixed signal microcontroller that possesses two SPI interfaces that allows it to communicate with the RFID IC and the sensor in parallel. Upon receiving a SPI directed read request from the RFID reader, the ROCKY100 SPI bridge requests the value of the last measurement from the microcontroller and the humidity and temperature measurements taken by the HTS221 IC are sent to the RFID reader. The use of harvested wireless energy as a power source makes the demonstrated module a potentially batteryless and thus a “Green” sensor.
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