Optimized Calculation of Radial and Axial Magnetic Forces between Two Non-Coaxial Coils of Rectangular Cross-Section with Parallel Axes

Author:

Babic Slobodan1ORCID,Guven Eray2ORCID,Song Kai-Hong3,Luo Yao4

Affiliation:

1. Independent Researcher, 53 Berlioz 101, Montréal, QC H3E 1N2, Canada

2. Poly-Grames Research Center, Department of Electrical Engineering, Polytechnique Montréal, Montréal, QC H3T 1J4, Canada

3. Key Laboratory of Intelligent Computing and Signal Processing, Ministry of Education Anhui University, Hefei 230039, China

4. Electrical Engineering and Automation, Wuhan University, Wuhan 430072, China

Abstract

In this paper, we introduce a new algorithm for calculating the radial and axial magnetic forces between two non-coaxial circular loops with parallel axes. These formulas are derived from a modified version of Grover’s formula for mutual inductance between the coils in question. Utilizing these formulas, we compute the radial and axial magnetic forces between two non-coaxial thick coils of rectangular cross-sections with parallel axes. In these calculations, we apply the filament method and conduct investigations to determine the optimal number of subdivisions for the coils in terms of computational time and accuracy. The method presented in this paper is also applicable to all conventional non-coaxial coils, such as disks, solenoids, and non-conventional coils like Bitter coils, all with parallel axes. This paper emphasizes the accuracy and computational efficiency of the calculations. Furthermore, the new method is validated according to several previously established methods.

Publisher

MDPI AG

Reference30 articles.

1. Grover, F.W. (1946). Inductance Calculations: Working Formulas and Tables, Dover Publications, Inc.

2. Dwight, H.B. (1945). Electrical Coils and Inductors: Their Electrical Characteristics and Theory, McGraw-Hill Book Company, Inc.

3. On the coefficients of mutual induction of eccentric coils;Butterworth;Lond. Edinb. Dublin Philos. Mag. J. Sci.,1916

4. Snow, C. (1954). Formulas for Computing Capacitance and Inductance. National Bureau of Standards Circular 544, US Government Printing Office.

5. A General Mutual Inductance Formula for Parallel Non-coaxial Circular Coils;Song;ACES J.,2019

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