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A Novel Passive Wireless Sensor for Concrete Humidity Monitoring

机译:用于混凝土湿度监测的新型无源无线传感器

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摘要

This paper presents a passive wireless humidity sensor for concrete monitoring. After discussing the transmission of electromagnetic wave in concrete, a novel architecture of wireless humidity sensor, based on Ultra-High Frequency (UHF) Radio Frequency Identification (RFID) technology, is proposed for low-power application. The humidity sensor utilizes the top metal layer to form the interdigitated electrodes, which were then filled with polyimide as the humidity sensing layer. The sensor interface converts the humidity capacitance into a digital signal in the frequency domain. A two-stage rectifier adopts a dynamic bias-voltage generator to boost the effective gate-source voltage of the switches in differential-drive architecture. The clock generator employs a novel structure to reduce the internal voltage swing. The measurement results show that our proposed wireless humidity can achieve a high linearity with a normalized sensitivity of 0.55% %RH at 20 °C. Despite the high losses of concrete, the proposed wireless humidity sensor achieves reliable communication performances in passive mode. The maximum operating distance is 0.52 m when the proposed wireless sensor is embedded into the concrete at the depth of 8 cm. The measured results are highly consistent with the results measured by traditional methods.
机译:本文提出了一种用于混凝土监测的无源无线湿度传感器。在讨论了电磁波在混凝土中的传输之后,提出了一种基于超高频(UHF)射频识别(RFID)技术的无线湿度传感器的新型架构,用于低功耗应用。湿度传感器利用顶部金属层形成叉指式电极,然后将其填充聚酰亚胺作为湿度感应层。传感器接口将湿度电容转换为频域中的数字信号。两级整流器采用动态偏置电压发生器来提高差动驱动架构中开关的有效栅极-源极电压。时钟发生器采用新颖的结构来减少内部电压摆幅。测量结果表明,我们提出的无线湿度可以在20°C下实现0.5%%RH的归一化灵敏度的高线性度。尽管混凝土损失很大,但所提出的无线湿度传感器在被动模式下仍可实现可靠的通信性能。当拟议的无线传感器以8 cm的深度嵌入混凝土中时,最大工作距离为0.52 m。测得的结果与传统方法测得的结果高度一致。

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