DocumentCode :
2124
Title :
Mechanical Noise Limit of a Strain-Coupled Magneto(Elasto)electric Sensor Operating Under a Magnetic or an Electric Field Modulation
Author :
Xin Zhuang ; Sing, Marc Lam Chok ; Dolabdjian, Christophe ; Yaojin Wang ; Finkel, Peter ; Jiefang Li ; Viehland, Dwight
Author_Institution :
Groupe de Rech. en Inf., Image, Autom. et Instrum. de Caen, Univ. of Caen, Caen, France
Volume :
15
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
1575
Lastpage :
1587
Abstract :
The mechanical noise limit of a strain-coupled magneto(elasto)electric composite has been investigated when a magnetic or an electric field modulation is applied to sense a low-frequency magnetic field and access dc field measurement capabilities. The sensitivity and noise of such a composite sensor were derived from constitutive equations based on the piezoelectric and ferromagnetic material properties. The analysis was used to evaluate the equivalent noise floor of the composite sensor and to explain the origin of noise by constituting a mechanically coupled electromagnetic model. Experimental measurements revealed a good fit with the proposed model. For example, an equivalent magnetic noise level of ~60 pT/Hz at 1 Hz with dc capability was achieved using an appropriate field modulation.
Keywords :
composite materials; electric field measurement; electric sensing devices; ferromagnetic materials; magnetic field measurement; magnetic noise; magnetic sensors; piezoelectric devices; piezoelectric materials; strain measurement; strain sensors; DC field measurement capability; electric field modulation; equivalent magnetic noise floor evaluation; ferromagnetic material property; low-frequency magnetic field sense; magnetic field modulation; mechanical noise limit; mechanically coupled electromagnetic model; piezoelectric material property; strain-coupled magnetoelastoelectric composite sensor; Magnetic fields; Magnetic flux; Magnetostriction; Noise; Strain; Stress; Magnetic field sensing; Magnetic noise; Magnetoelectric effects; Signal modulation; magnetic field sensing; magnetic noise; signal modulation;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2014.2363880
Filename :
6928440
Link To Document :
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