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提高平面微波传感器性能的技术:综述与最新进展。

Techniques to Improve the Performance of Planar Microwave Sensors: A Review and Recent Developments.

机构信息

Electrical and Computer Engineering Department, University of Toronto, 10 King's College Circle, Toronto, ON M5S3G4, Canada.

School of Advanced Technologies, Iran University of Science and Technology, Tehran 1684613114, Iran.

出版信息

Sensors (Basel). 2022 Sep 14;22(18):6946. doi: 10.3390/s22186946.

Abstract

Planar microwave sensors have become increasing developed in recent decades, especially in material characterization (solid/liquid) as they provide regions highly sensitive to the surrounding medium. However, when it comes to deciphering the content of practical biological analytes or chemical components inside a host medium, even higher sensitivities are required due to their minute concentrations. This review article presents a comprehensive outlook on various methodologies to enhance sensitivity (e.g., coupling resonators, channel embedding, analyte immobilization, resonator pattern recognition, use of phase variation, using coupled line section, and intermodulation products), resolution (active sensors, differential measurements), and robustness (using machine learning) of arbitrary sensors of interest. Some of the most practical approaches are presented with prototype examples, and the main applications of incorporating such procedures are reported. Sensors with which the proposed techniques are implemented exhibit higher performance for high-end and real-life use.

摘要

平面微波传感器在近几十年得到了快速发展,尤其是在材料特性(固/液)方面,因为它们提供了对周围介质高度敏感的区域。然而,当涉及到破译实际生物分析物或宿主介质内部化学组分的内容时,由于其浓度非常低,因此需要更高的灵敏度。本文综述了各种提高灵敏度(如耦合谐振器、通道嵌入、分析物固定化、谐振器模式识别、相位变化的利用、耦合线部分的利用和互调产物)、分辨率(主动传感器、差分测量)和稳健性(机器学习的应用)的方法,以满足任意感兴趣传感器的要求。本文提出了一些最实用的方法,并给出了原型示例,报道了采用这些方法的主要应用。采用所提出技术的传感器在高端和实际应用中表现出更高的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a85/9504794/35271e2d9210/sensors-22-06946-g001.jpg

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