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General Formulation of the Electromagnetic Field Distribution in Machines and Devices Using Fourier Analysis

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TLDR
In this paper, a general mesh-free description of the magnetic field distribution in various electromagnetic machines, actuators, and devices is presented, based on transfer relations and Fourier theory.
Abstract
We present a general mesh-free description of the magnetic field distribution in various electromagnetic machines, actuators, and devices. Our method is based on transfer relations and Fourier theory, which gives the magnetic field solution for a wide class of two-dimensional (2-D) boundary value problems. This technique can be applied to rotary, linear, and tubular permanent-magnet actuators, either with a slotless or slotted armature. In addition to permanent-magnet machines, this technique can be applied to any 2-D geometry with the restriction that the geometry should consist of rectangular regions. The method obtains the electromagnetic field distribution by solving the Laplace and Poisson equations for every region, together with a set of boundary conditions. Here, we compare the method with finite-element analyses for various examples and show its applicability to a wide class of geometries.

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Journal ArticleDOI

2-D Exact Analytical Model for Surface-Mounted Permanent-Magnet Motors With Semi-Closed Slots

TL;DR: In this article, an analytical subdomain model is presented to compute the magnetic field distribution in surface-mounted permanent magnet motors with semi-closed slots, which accurately accounts for armature reaction magnetic field and mutual influence between the slots.
Journal ArticleDOI

Analytical Hybrid Model for Flux Switching Permanent Magnet Machines

TL;DR: The following paper introduces an alternative analytical modeling technique by means of a hybrid model, which combines the advantages of the MEC and the Fourier analysis.
Journal ArticleDOI

A Critical Review of Advanced Electric Machines and Control Strategies for Electric Vehicles

TL;DR: This critical review will clarify the development trends of electric machines and their controls and reveal new design ideas, topologies, structures, methodologies, control strategies, pros and cons, and foresight for advanced electric machines.
Journal ArticleDOI

Simple Analytical Expressions for the Force and Torque of Axial Magnetic Couplings

TL;DR: In this article, a theoretical analysis of an axial magnetic coupling is presented, leading to new closed-form expressions for the magnetic axial force and torque, which are obtained by using a 2D approximation of the magnetic coupling geometry (mean radius model).
Journal ArticleDOI

Modeling of Flux Switching Permanent Magnet Machines With Fourier Analysis

TL;DR: In this paper, an alternative technique based on the harmonic or Fourier model was proposed to model the magnetic field distribution and torque output in the flux switching permanent magnet machine (FPM) for applications demanding high torque density and high speed capability.
References
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Book

The Finite Element Method in Electromagnetics

Jian-Ming Jin
TL;DR: The Finite Element Method in Electromagnetics, Third Edition as discussed by the authors is a leading textbook on the finite element method, incorporating major advancements and further applications in the field of electromagnetic engineering.
Journal ArticleDOI

Instantaneous magnetic field distribution in brushless permanent magnet DC motors. I. Open-circuit field

TL;DR: In this article, an analytical technique for predicting the instantaneous magnetic field distribution in the airgap region of radial-field topologies of brushless permanent-magnet DC motors, under any specified load condition and accounting implicitly for the stator winding current waveform and the effect of stator-slot-openings, has been developed.
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Analytical calculation of magnetic field distribution in the slotted air gap of a surface permanent-magnet motor using complex relative air-gap permeance

TL;DR: In this paper, an analytical method for calculation of no-load magnetic field distribution in the slotted air gap of a surface permanent-magnet (PM) motor with radial or parallel magnetization is presented.
Journal ArticleDOI

3D analytical calculation of the forces exerted between two cuboidal magnets

TL;DR: In this article, the 3D calculation of the interaction forces exerted between two cuboidal magnets, by analytical means only, is presented, and the obtained expressions are rather complicated, but a pocket programmable calculator is sufficient to the force calculation.
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