基于电容数字转换的电容式叶片湿度传感器的设计与实现

Elena Filipescu;Giovanni Paolo Colucci;Daniele Trinchero
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摘要

本文提出了一种创新的电子叶片湿度传感器(LWS)。它利用电容传感,结合创新的数据采集方法,实现了电容数字转换器。研究探讨了电容式叶湿传感器的设计程序,提出了一种分析方法,并强调了低制造成本。由于 LWS 适用于物联网应用,本文对其能耗进行了估算,并引入了升压稳压器来优化功率使用,从而延长电池寿命。研究介绍了仿真结果和实验验证,包括受控条件下的临时校准程序。该传感器在真实的农业环境中进行了为期一个完整植被季节的测试,证明其能够连续无故障运行。
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Design and Implementation of a Capacitive Leaf Wetness Sensor Based on Capacitance-to-Digital Conversion
An innovative implementation of an electronic leaf wetness sensor (LWS) is proposed. It utilizes capacitive sensing, combined with an innovative data acquisition method, which implements a capacitance-to-digital converter. The study explores the design procedure of a capacitive LWS, proposing an analytical approach and emphasizing low manufacturing costs. Since the LWS is intended for Internet-of-Things applications, this article estimates its energy consumption, introducing a boost regulator to optimize power usage, contributing to extend the battery life. The study presents simulation results and experimental validations, including an ad-hoc calibration procedure under controlled conditions. The sensors were tested in real agricultural environments over a complete vegetative season, demonstrating their capability to operate continuously without problems.
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2024 Index IEEE Transactions on AgriFood Electronics Vol. 2 Table of Contents Front Cover IEEE Circuits and Systems Society Information IEEE Circuits and Systems Society Information
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