Wei Zhihua, Huang Jie, Li Jing, Li Junshan, Liu Xuyang, Ni Xingsheng
College of Engineering and Technology, Southwest University, Chongqing 400715, China.
Sensors (Basel). 2019 Jul 27;19(15):3308. doi: 10.3390/s19153308.
In this study, an ultra-compact humidity sensor based on a double-folded substrate integrated waveguide (SIW) re-entrant cavity was proposed and analyzed. By folding a circular re-entrant cavity twice along its two orthogonally symmetric planes, the designed structure achieved a remarkable size reduction (up to 85.9%) in comparison with a conventional TM-mode circular SIW cavity. The operating principle of the humidity sensor is based on the resonant method, in other words, it utilizes the resonant properties of the sensor as signatures to detect the humidity condition of the ambient environment. To this end, a mathematical model quantitatively relating the resonant frequency of the sensor and the relative humidity (RH) level was established according to the cavity perturbation theory. The sensing performance of the sensor was experimentally validated in a RH range of 30%-80% by using a humidity chamber. The measured absolute sensitivity of the sensor was calculated to be 135.6 kHz/%RH, and the corresponding normalized sensitivity was 0.00627%/%RH. It was demonstrated that our proposed sensor not only has the merits of compact size and high sensitivity, but also benefits from a high Q-factor and ease of fabrication and integration. These advantages make it an excellent candidate for humidity sensing applications in various fields such as the agricultural, pharmaceutical, and food industries.
在本研究中,提出并分析了一种基于双折衬底集成波导(SIW)凹腔的超紧凑型湿度传感器。通过沿其两个正交对称平面将圆形凹腔折叠两次,与传统的TM模圆形SIW腔相比,所设计的结构实现了显著的尺寸减小(高达85.9%)。湿度传感器的工作原理基于谐振方法,也就是说,它利用传感器的谐振特性作为特征来检测周围环境的湿度状况。为此,根据腔微扰理论建立了一个将传感器谐振频率与相对湿度(RH)水平定量关联的数学模型。通过使用湿度箱在30%-80%的RH范围内对传感器的传感性能进行了实验验证。计算得出传感器的测量绝对灵敏度为135.6 kHz/%RH,相应的归一化灵敏度为0.00627%/%RH。结果表明,我们提出的传感器不仅具有尺寸紧凑和灵敏度高的优点,而且具有高品质因数以及易于制造和集成的优势。这些优点使其成为农业、制药和食品工业等各个领域湿度传感应用的理想候选者。