Zamel Hany M, Abd El-Rahman Sherine Ismail, Attiya Ahmed M
Microwave Engineering Department, Electronics Research Institute (ERI), Cairo, 11843, Egypt.
Sci Rep. 2024 Sep 12;14(1):21316. doi: 10.1038/s41598-024-71175-y.
In this paper, a simple and efficient approach is presented to classify different power materials based on a one port microwave sensor in X-band. This classification focuses on powder materials, unlike prior studies that focused on liquids (castor oil, neem oil, sunflower oil, sesame oil, and mahua oil), this classification represents a shift towards powdered materials. The response of the proposed sensor is enhanced by adding a metamaterial (MTM) unit cell of F-shape to focus electromagnetic waves on the sample under test. This metamaterial-based sensor is designed to differentiate between different types of materials based on the corresponding reflection coefficient. The sample under test is included inside a dielectric box inserted inside a rectangular waveguide. The MTM unit cell is added on the front face of this box towards the direction of the incident wave. The resonance frequency depends on the characteristics of the powder material inside the box. The MTM unit cell enhances this resonance to simplify the process of classification of different materials. The measured results show that the proposed sensor can detect a wide range of powder materials, including clay, cement, sand, and mixtures: cement & sand, and clay & sand. The designed sensor can be used in various applications, including detection and classification of different powder materials in industrial applications.
本文提出了一种基于X波段单端口微波传感器对不同电力材料进行分类的简单有效方法。这种分类聚焦于粉末材料,与之前聚焦于液体(蓖麻油、印楝油、葵花籽油、芝麻油和马胡油)的研究不同,这种分类代表了朝着粉末材料的转变。通过添加一个F形超材料(MTM)单元来增强所提出传感器的响应,以便将电磁波聚焦在被测样品上。这种基于超材料的传感器旨在根据相应的反射系数区分不同类型的材料。被测样品包含在插入矩形波导内的介质盒中。MTM单元添加在该盒朝入射波方向的正面。共振频率取决于盒内粉末材料的特性。MTM单元增强了这种共振,以简化不同材料的分类过程。测量结果表明,所提出的传感器可以检测多种粉末材料,包括粘土、水泥、沙子以及混合物:水泥与沙子、粘土与沙子。所设计传感器可用于各种应用,包括工业应用中不同粉末材料的检测和分类。