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  • In this article we present a model that is based on coupled surface and volume currents along with use of Biot-Savart law. Measurement and experiment verification on industry made magnet that matches our model is made on our automated apparatus for measurement of 3D magnetic field. Comparison as well as visualization is done by MATLAB graphics. We present main results and comparison of data at annulus diameter and at 5th cut from midpoint. We discuss in detail why the measured data is not in perfect agreement with theoretical model. Presumptions for elimination of such behavior and possible systematic error are taken into an account as well.
  • In this article we present a model that is based on coupled surface and volume currents along with use of Biot-Savart law. Measurement and experiment verification on industry made magnet that matches our model is made on our automated apparatus for measurement of 3D magnetic field. Comparison as well as visualization is done by MATLAB graphics. We present main results and comparison of data at annulus diameter and at 5th cut from midpoint. We discuss in detail why the measured data is not in perfect agreement with theoretical model. Presumptions for elimination of such behavior and possible systematic error are taken into an account as well. (en)
Title
  • Fast numeric calcualtion of massive conductor 3D magnetic field
  • Fast numeric calcualtion of massive conductor 3D magnetic field (en)
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  • Fast numeric calcualtion of massive conductor 3D magnetic field
  • Fast numeric calcualtion of massive conductor 3D magnetic field (en)
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  • RIV/46747885:24220/09:#0001249!RIV10-GA0-24220___
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  • P(GD102/08/H081), S
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  • 314700
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  • RIV/46747885:24220/09:#0001249
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  • Biot-Savart Law, finite length conductor, numerical integration, three phase animation, power net conductors (en)
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  • [3D397A40276D]
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  • Cheb
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  • Plzeň
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  • Advanced Methods in the Theory of Electrical Engineering
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  • Košek, Miloslav
  • Richter, Aleš
  • Truhlář, Martin
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number of pages
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  • Západočeská univerzita v Plzni
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  • 978-80-7043-821-3
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  • 24220
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