Title :
Exact solutions for the mutual inductance of circular coils and elliptic coils
Author_Institution :
Univ. of Agder, Grimstad, Norway
Abstract :
An exact solution is presented for the mutual inductance between general noncoaxial thin circular and elliptic coils with parallel axes. The thin coil solution is given as an angular integral of an elliptic integral expression. In addition, for the coaxial case, an exact solution is given for the mutual inductance of a thick circular coil and a thick elliptic coil. The elliptic coil is such that the coil thickness is the same along both elliptic semi-axes. The thick coil solution is given as an integral of an expression involving Bessel and Struve functions. Extensive numerical results for sample geometries are given for both solutions, which are cross checked against each other in the limit as the thick coils become thin.
Keywords :
Bessel functions; coils; inductance; Bessel function; Struve function; angular integral expression; coil thickness; elliptic integral expression; elliptic semiaxes; exact solutions; mutual inductance; noncoaxial thin circular coil; parallel axes; thick circular coil; thick coil solution; thick elliptic coil; thin coil solution; Coils; Geometry; Inductance; Bessel functions; coils; inductance; magnetic fields;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2161768