Numerical Optimization of the Tube-Cored Induction Magnetometer Weight Under Specific Noise Constraints
The aim of this paper is to achieve the minimum weight for the induction magnetometer (IM) with specific noise constraints. First, a tube magnetic core was used to decrease the weight and achieve a similar magnetic concentrating performance as the rod one. The parameters, including the coil resistan...
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Veröffentlicht in: | IEEE sensors journal 2017-06, Vol.17 (11), p.3302-3308 |
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Sprache: | eng |
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Zusammenfassung: | The aim of this paper is to achieve the minimum weight for the induction magnetometer (IM) with specific noise constraints. First, a tube magnetic core was used to decrease the weight and achieve a similar magnetic concentrating performance as the rod one. The parameters, including the coil resistance, the inductance, the apparent permeability with different coil-to-core length ratios, and the noise equivalent magnetic induction, were evaluated theoretically. A chopping pre-amplifier circuit was used to suppress the 1/f noise in low frequencies. Finally, the optimization problem proposed from the practical applications was solved using the penalty function method (interior point method). tured and tested. The experimental results showed 3.1 pT/√Hz To verify the theoretical analysis, the optimal IM was manufacat 1 Hz, noise floor 22 fT/√Hz, and total weight 0.52 kg, which were well coincided with the theoretical calculation. Moreover, the relationships among the noise constraints and the coil weight were also discussed. |
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ISSN: | 1530-437X 1558-1748 |
DOI: | 10.1109/JSEN.2017.2688488 |