DocumentCode :
3850215
Title :
Numerical Analysis for Remote Identification of Materials With Magnetic Characteristics
Author :
Yavuz Ege;Mehmet Gökhan Sensoy;Osman Kalender;Sedat Nazlibilek
Author_Institution :
Department of Physics Education, Necatibey Faculty of Education, Balikesir University, Balikesir, Turkey
Volume :
60
Issue :
9
fYear :
2011
Firstpage :
3140
Lastpage :
3152
Abstract :
There is a variety of methods used for remote sensing of objects such as acoustic, ground penetration radar detection, electromagnetic induction spectroscopy, infrared imaging, thermal neutron activation, core four-pole resonance, neutron backscattering, X-ray backscattering, and magnetic anomaly. The method that has to be used can be determined by the type of material, geographical location (underground or water), etc. Recent studies have been concentrated on the improvement of the criteria such as sensing distances, accuracy, and power consumption. In this paper, anomalies created by materials with magnetic characteristics at the perpendicular component of the Earth magnetic field have been detected by using a KMZ51 anisotropic magnetoresistive sensor with high sensitivity and low power consumption, and also, the effects of physical properties of materials on magnetic anomaly have been investigated. By analyzing the graphics obtained by 2-D motion of the sensor over the material, the most appropriate mathematical curves and formulas have been determined. Based on the physical properties of the magnetic material, the variations of the variables constituting the formulas of the curves have been analyzed. The contribution of this paper is the use of the results of these analyses for the purpose of identification of an unknown magnetic material. This is a new approach for the detection and determination of materials with magnetic characteristics by sensing the variation at the perpendicular component of the Earth magnetic field. The identification process has been explained in detail in this paper.
Keywords :
"Magnetic resonance imaging","Perpendicular magnetic anisotropy","Magnetoacoustic effects","Magnetic materials","Voltage measurement"
Journal_Title :
IEEE Transactions on Instrumentation and Measurement
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2011.2124651
Filename :
5743008
Link To Document :
بازگشت