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An ancillary boundary integral equation for magnetostatic analysis
Authors:Marc S Ingber  Gerald F Kiuttu
Affiliation:a Department of Mechanical Engineering, University of Colorado Denver, Denver, CO 80217, USA
b VariTech Services, 2901 Juan Tabo Blvd. NE, Suite 121-F, Albuquerque, NM 87112, USA
Abstract:The boundary element method (BEM) has been established as an effective means for magnetostatic analysis. Direct BEM formulations for the magnetic vector potential have been developed over the past 20 years. There is a less well-known direct boundary integral equation (BIE) for the magnetic flux density which can be derived by taking the curl of the BIE for the magnetic vector potential and applying properties of the scalar triple product. On first inspection, the ancillary boundary integral equation for the magnetic flux density appears to be homogeneous, but it can be shown that the equation is well-posed and non-homogeneous using appropriate boundary conditions. In the current research, the use of the ancillary boundary integral equation for the magnetic flux density is investigated as a stand-alone equation and in tandem with the direct formulation for the magnetic vector potential.
Keywords:Magnetostatics  Vector Laplace equation  Magnetic vector potential  Magnetic flux density
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