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Design Implementation and Simulation of a Fringing Field Capacitive Humidity Sensor

机译:交流场电容湿度传感器的设计实现和仿真

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摘要

The world population is growing in an accelerated way urging the need for a more efficient and sustainable agricultural industry. Initially developed for smart cities which face the same challenges caused by an increasing population, Internet of Things (IoT) technologies have evolved rapidly over the last few years and are now moving successfully to agriculture. Wireless Sensor Networks (WSNs) have been reported to be used in the agri-food sector and could answer the call for a more optimized agricultural management. This paper investigates a PCB-made interdigited capacitive (IDC) soil humidity sensor as a low-price alternative to the existing ones on the market. An in-depth comparative study is performed on 30 design variations, part of them also manufactured for further investigations. By measurements and simulations, the influence of the aspect ratio and dielectric thickness on the sensitivity and capacitance of the sensor are studied. In the end, a Humidity and Temperature Measurement Wireless Equipment (HTMWE) for IoT agriculture applications is implemented with this type of sensor.
机译:世界人口正在加速推动促进更有效和可持续的农业产业的需求。最初为智能城市开发,面对由于人口越来越多的挑战,事物互联网(IOT)技术在过去几年中迅速发展,现在正在成功地向农业发展。据报道,无线传感器网络(WSNS)将用于农业食品部门,并可以回答更优化的农业管理。本文调查了PCB制造的互补电容(IDC)土壤湿度传感器作为市场上现有的低价替代品。在30个设计变化上进行了深入的比较研究,其中部分也制造用于进一步调查。通过测量和仿真,研究了纵横比和介电厚度对传感器的灵敏度和电容的影响。最终,用这种类型的传感器实现IOT农业应用的湿度和温度测量无线设备(HTMWE)。

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