Yu Longzheng, Xu Peng, Li Wenbo, Cai Xiao
Research Center of Applied Electromagnetics, Nanjing University of Information Science and Technology, Nanjing 210044, China.
School of Information Engineering, Jiangsu Maritime Institute, Nanjing 211100, China.
Sensors (Basel). 2025 Jun 26;25(13):3965. doi: 10.3390/s25133965.
The non-contact detection of foreign objects embedded in lossy dielectric media such as soil, vegetation, or ice remains a critical challenge in applications including environmental monitoring and agricultural safety. This communication presents the design and experimental validation of an array antenna system capable of accurately localizing foreign objects in such lossy mediums. The proposed array antenna is capable of focusing electromagnetic energy at the location of the foreign object, thereby enabling precise positioning. The main idea of the foreign object detection is to set some of the antenna elements as test receiving antennas and measure the scattering parameters between the transmitting antennas and the receiving antennas. The excitation distribution of the transmitting array is optimized by using the method of maximum power transmission efficiency based on the differential scattering parameter matrices with the absence and presence of the foreign object. To validate the proposed design, a 5 × 5 microstrip patch array antenna was fabricated and tested with colza oil as a lossy medium. A copper block immersed in the colza oil served as the foreign object for detection, demonstrating the feasibility of the non-contact detection scheme. Experimental results demonstrate that the radiated field can be effectively focused at the object location, confirming the feasibility and precision of the proposed non-contact detection approach.
在包括环境监测和农业安全在内的应用中,对嵌入土壤、植被或冰等有损介质中的异物进行非接触式检测仍然是一项严峻挑战。本文介绍了一种能够在这种有损介质中精确定位异物的阵列天线系统的设计与实验验证。所提出的阵列天线能够将电磁能量聚焦在异物所在位置,从而实现精确定位。异物检测的主要思路是将一些天线元件设置为测试接收天线,并测量发射天线与接收天线之间的散射参数。基于异物存在和不存在时的差分散射参数矩阵,采用最大功率传输效率方法优化发射阵列的激励分布。为验证所提出的设计,制作了一个5×5微带贴片阵列天线,并以菜籽油作为有损介质进行测试。将一块浸在菜籽油中的铜块用作待检测的异物,证明了非接触检测方案的可行性。实验结果表明,辐射场能够有效地聚焦在物体位置,证实了所提出的非接触检测方法的可行性和精确性。