Techniques to Improve the Performance of Planar Microwave Sensors

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 compo...

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Detalhes bibliográficos
Autores: Abdolrazzaghi, Mohammad|||0000-0002-4811-8660, Nayyeri, Vahid|||0000-0002-0328-4737, Martín, Ferran|||0000-0002-1494-9167
Formato: artículo
Fecha de publicación:2022
País:España
Recursos:Universitat Autònoma de Barcelona
Repositorio:Dipòsit Digital de Documents de la UAB
Idioma:inglés
OAI Identifier:oai:ddd.uab.cat:266275
Acesso em linha:https://ddd.uab.cat/record/266275
https://dx.doi.org/urn:doi:10.3390/s22186946
Access Level:acceso abierto
Palavra-chave:Microwave sensor
Dielectric characterization
Microfluidics
Sensitivity
Resolution
Active sensor
Machine learning
Resonators
Descrição
Resumo: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.