Master thesis : State of the art, design and development of a digital leakage current sensor with high sensitivity and fast response
Colback, Aurélien
Promoteur(s) : Frebel, Fabrice
Date de soutenance : 27-jui-2022/28-jui-2022 • URL permanente : http://hdl.handle.net/2268.2/14235
Détails
Titre : | Master thesis : State of the art, design and development of a digital leakage current sensor with high sensitivity and fast response |
Titre traduit : | [fr] Etat de l'art, conception et développement d'un capteur de courant de fuite avec haute sensibilité et faible temps de réponse |
Auteur : | Colback, Aurélien |
Date de soutenance : | 27-jui-2022/28-jui-2022 |
Promoteur(s) : | Frebel, Fabrice |
Membre(s) du jury : | Vanderbemden, Philippe
Joannes, Thierry Borlez, Yves |
Langue : | Anglais |
Nombre de pages : | 74 |
Mots-clés : | [en] leakage current [en] sensor |
Discipline(s) : | Ingénierie, informatique & technologie > Ingénierie électrique & électronique |
Public cible : | Professionnels du domaine |
Institution(s) : | Université de Liège, Liège, Belgique |
Diplôme : | Master : ingénieur civil électricien, à finalité spécialisée en "electronic systems and devices" |
Faculté : | Mémoires de la Faculté des Sciences appliquées |
Résumé
[en] In any high voltage installation, leakage currents can lead to losses and damage to power
installations. It can also injure or kill people if the current flows through a body. It is thus
important to measure and monitor these currents and react accordingly.
This thesis report aims to document the conception of a device capable of measuring leakage
currents and report the measurements to a master system. This sensor has a high sensitivity, a low error, and a fast response. It works both on AC and DC leakage currents. The
sensor embeds an STM32 microcontroller and the communication with the master is done via SPI.
This report contains a state-of-the-art review of the leakage current sensing techniques.
It also presents a computer modeling of the technique used to choose the configuration and
to study the different parameters that might influence the sensitivity. An explanation of the
hardware and software designs is given.
The experimental validation shows that the device has a decent sensitivity and excellent
linearity. However, it was not possible to have both a good differential mode rejection and a
good magnetization error rejection at the same time.
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