In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors

This paper reports the indoor wireless measurement of pressure from zero-power (or passive) microwave (24 GHz) sensors. The sensors are packaged and allow the remote measurement of overpressure up to 2.1 bars. Their design, fabrication process and packaging are detailed. From the measurement of sens...

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Main Authors: Julien Philippe, Maria Valeria De Paolis, Dominique Henry, Alexandre Rumeau, Antony Coustou, Patrick Pons, Hervé Aubert
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/19/6/1263
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spelling doaj-db47b42f23bb48c080b26a644db67a362020-11-25T00:13:21ZengMDPI AGSensors1424-82202019-03-01196126310.3390/s19061263s19061263In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave SensorsJulien Philippe0Maria Valeria De Paolis1Dominique Henry2Alexandre Rumeau3Antony Coustou4Patrick Pons5Hervé Aubert6Laboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceLaboratoire d’Analyse et d’Architecture des Systèmes (LAAS), Université de Toulouse, Centre National de la Recherche Scientifique (CNRS), Institut National Polytechnique (INP), 7 avenue du Colonel Roche, 31031 Toulouse, FranceThis paper reports the indoor wireless measurement of pressure from zero-power (or passive) microwave (24 GHz) sensors. The sensors are packaged and allow the remote measurement of overpressure up to 2.1 bars. Their design, fabrication process and packaging are detailed. From the measurement of sensor scattering parameters, the outstanding sensitivity of 995 MHz/bar between 0.8 and 2.1 bars was achieved with the full-scale measurement range of 1.33 GHz. Moreover, the 3D radar imagery technique was applied for the remote interrogation of these sensors in electromagnetic reverberant environments. The full-scale dynamic range of 4.9 dB and the sensitivity of 4.9 dB/bar between 0.7 and 1.7 bars were achieved with radar detection in a highly reflective environment. These measurement results demonstrate for the first time the ability of the radar imagery technique to interrogate fully passive pressure sensors in electromagnetic reverberant environments.http://www.mdpi.com/1424-8220/19/6/1263chipless sensorselectromagnetic clutter mitigationradar imagery techniquesensor packagingwireless pressure sensorszero-power sensors
collection DOAJ
language English
format Article
sources DOAJ
author Julien Philippe
Maria Valeria De Paolis
Dominique Henry
Alexandre Rumeau
Antony Coustou
Patrick Pons
Hervé Aubert
spellingShingle Julien Philippe
Maria Valeria De Paolis
Dominique Henry
Alexandre Rumeau
Antony Coustou
Patrick Pons
Hervé Aubert
In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
Sensors
chipless sensors
electromagnetic clutter mitigation
radar imagery technique
sensor packaging
wireless pressure sensors
zero-power sensors
author_facet Julien Philippe
Maria Valeria De Paolis
Dominique Henry
Alexandre Rumeau
Antony Coustou
Patrick Pons
Hervé Aubert
author_sort Julien Philippe
title In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
title_short In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
title_full In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
title_fullStr In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
title_full_unstemmed In-Situ Wireless Pressure Measurement Using Zero-Power Packaged Microwave Sensors
title_sort in-situ wireless pressure measurement using zero-power packaged microwave sensors
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2019-03-01
description This paper reports the indoor wireless measurement of pressure from zero-power (or passive) microwave (24 GHz) sensors. The sensors are packaged and allow the remote measurement of overpressure up to 2.1 bars. Their design, fabrication process and packaging are detailed. From the measurement of sensor scattering parameters, the outstanding sensitivity of 995 MHz/bar between 0.8 and 2.1 bars was achieved with the full-scale measurement range of 1.33 GHz. Moreover, the 3D radar imagery technique was applied for the remote interrogation of these sensors in electromagnetic reverberant environments. The full-scale dynamic range of 4.9 dB and the sensitivity of 4.9 dB/bar between 0.7 and 1.7 bars were achieved with radar detection in a highly reflective environment. These measurement results demonstrate for the first time the ability of the radar imagery technique to interrogate fully passive pressure sensors in electromagnetic reverberant environments.
topic chipless sensors
electromagnetic clutter mitigation
radar imagery technique
sensor packaging
wireless pressure sensors
zero-power sensors
url http://www.mdpi.com/1424-8220/19/6/1263
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