Comparison of Measurement Models for 3D Magnetic Localization and Tracking

In this paper, we consider magnetic positioning and tracking of objects and provide a comparison of the characteristics of two major measurement models: the magnetic dipole model and the mutual inductance model. The numerical results obtained by applying these models to a short-range position measur...

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Veröffentlicht in:Sensors (Basel, Switzerland) Switzerland), 2017-11, Vol.17 (11), p.2527
Hauptverfasser: De Angelis, Guido, De Angelis, Alessio, Moschitta, Antonio, Carbone, Paolo
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Sprache:eng
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Zusammenfassung:In this paper, we consider magnetic positioning and tracking of objects and provide a comparison of the characteristics of two major measurement models: the magnetic dipole model and the mutual inductance model. The numerical results obtained by applying these models to a short-range position measurement application, with a maximum operating distance of approximately 50 cm, are compared. Based on the results of this comparison, a prototype 9-sensor array is developed, experimental tests are performed, and extensive measurement results are presented. Outcomes show the feasibility of tracking the position and orientation of a mobile coil in real time with a median positioning error below 1 cm and a worst-case error of about 2 cm and 11 degrees inside a spatial region of 30 × 30 × 30 cm³ operational volume.
ISSN:1424-8220
1424-8220
DOI:10.3390/s17112527