New procedures for calculating the mutual inductance of the system: filamentary circular coil-massive circular solenoid
New and fast procedures for calculating the mutual inductance between a thin circular filament coil and a massive circular solenoid in air are presented. The coils are axisymmetric. These results are expressed over the complete elliptical integrals of the first and second kind, Heumann's Lambda...
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Published in: | IEEE transactions on magnetics Vol. 39; no. 3; pp. 1131 - 1134 |
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Main Authors: | , , |
Format: | Journal Article Conference Proceeding |
Language: | English |
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New York, NY
IEEE
01-05-2003
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | New and fast procedures for calculating the mutual inductance between a thin circular filament coil and a massive circular solenoid in air are presented. The coils are axisymmetric. These results are expressed over the complete elliptical integrals of the first and second kind, Heumann's Lambda function, and one term that has to be solved numerically. The numerical integration of this term is based on some numerical integrations to get the satisfactory accuracy and computational cost. These new expressions are accurate and simple to apply for useful applications. Also, another comparative method based on an approximation of the massive solenoid by Maxwell's coils is given. The paper discusses the computational cost and the accuracy. Results obtained by the two approaches are in excellent agreement. |
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AbstractList | New and fast procedures for calculating the mutual inductance between a thin circular filament coil and a massive circular solenoid in air are presented. The coils are axisymmetric. These results are expressed over the complete elliptical integrals of the first and second kind, Heumann's Lambda function, and one term that has to be solved numerically. The numerical integration of this term is based on some numerical integrations to get the satisfactory accuracy and computational cost. These new expressions are accurate and simple to apply for useful applications. Also, another comparative method based on an approximation of the massive solenoid by Maxwell's coils is given. The paper discusses the computational cost and the accuracy. Results obtained by the two approaches are in excellent agreement. |
Author | Babic, S. Akyel, C. Salon, S.J. |
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Cites_doi | 10.1109/TMAG.2000.875240 10.1109/20.619614 10.1109/TMAG.1987.1065777 10.1109/20.947050 |
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Keywords | Computation time Magnetostatics Theoretical study massive solenoid Filament winding Fast algorithm Mutual inductance Filamentary circular coil Solenoids Calculation methods |
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References | kalantarov (ref4) 1955 ref9 abramowitz (ref10) 1972 ref3 gander (ref11) 1998 snow (ref7) 1954 ref2 dwight (ref8) 1945 ref1 grover (ref5) 1964 boom (ref6) 1983; iv |
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Snippet | New and fast procedures for calculating the mutual inductance between a thin circular filament coil and a massive circular solenoid in air are presented. The... |
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SubjectTerms | Accuracy Applied classical electromagnetism Coiling Coils Computational efficiency Electromagnetism; electron and ion optics Exact sciences and technology Finite element methods Fundamental areas of phenomenology (including applications) Inductance Inductors Magnetism Magnetostatics Magnetostatics; magnetic shielding, magnetic induction, boundary-value problems Mathematical analysis Mathematical models Numerical integration Physics Solenoids Transmission line antennas Transmission line discontinuities |
Title | New procedures for calculating the mutual inductance of the system: filamentary circular coil-massive circular solenoid |
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