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A Simple Method for Performance Prediction of Permanent Magnet Eddy Current Couplings Using a New Magnetic Equivalent Circuit Model

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TLDR
A simple and practical magnetic equivalent circuit (MEC) based analytical technique for calculating the performance parameters of the permanent magnet (PM) eddy current coupling is presented and shows that in a considerably wide range of slip speeds, the torques predicted by the presented method match well with those obtained by both the three-dimensional finite element analysis and experimental measurement.
Abstract
A simple and practical magnetic equivalent circuit (MEC) based analytical technique for calculating the performance parameters of the permanent magnet (PM) eddy current coupling is presented. In the proposed MEC model built with the lumped parameters, the eddy current effects are inherently taken into account by introducing a branch magnetic circuit allowing for the magnetomotive force and the reaction magnetic flux. A complete formulation for the reaction flux which is treated as a kind of leakage flux is derived. A verification process is conducted and it is shown that in a considerably wide range of slip speeds, the torques predicted by the presented method match well with those obtained by both the three-dimensional finite element analysis and experimental measurement. The new MEC-based method also proves to be effective in the performance simulation of the PM eddy current coupling with different design parameters. In addition, the limitation of the proposed approach is also discussed and the reasons are fully investigated.

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Citations
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Journal ArticleDOI

An improved performance prediction model of permanent magnet eddy current couplings based on eddy current inductance characteristics

TL;DR: In this paper, an improved theoretical model of the permanent magnet eddy current magnetic couplings (Pmec) is proposed based on magnetic equivalent circuit (Mec), Faraday's law and Ampere's law.
Journal ArticleDOI

Modelling and experimental research on the equivalent magnetic circuit network of hybrid magnetic couplers considering the magnetic leakage effect

TL;DR: In this article, the authors used the 3D-FEM in the initial design and optimization of hybrid magnetic couplers (HMCs) and provided a theoretical reference for the design and investigation of HMCs, and the output torque value of the HMC was analyzed and calculated by considering that the air gap leakage was closer to the test value and was more accurate than the value calculated without considering the air-gap leakage effect.
Journal ArticleDOI

Magneto-Electric Coupling Network Model for Reduction of PM Eddy Current Loss in Flux-Switching Permanent Magnet Machine

TL;DR: A mesh-based magneto-electric coupling network model for prediction and reduction of permanent magnet (PM) eddy current loss in a flux-switching permanent magnet machine and high efficiency and accuracy with detailed magnetic field distributions is proposed.
Journal ArticleDOI

Modeling and Performance Analysis of an Axial-Radial Combined Permanent Magnet Eddy Current Coupler

TL;DR: The transmission performance of an axial-radial combined permanent magnet eddy current coupler prototype is investigated, and the analytical calculation results are compared with the results of the finite element method simulations and experimental tests.
Journal ArticleDOI

Equivalent Magnetic Network Modeling of Dual-Winding Outer-Rotor Vernier Permanent Magnet Machine Considering Pentagonal Meshing in the Air-Gap

TL;DR: In this paper , an equivalent-magnetic-network (EMN) model of the VPM generator is extracted by combining reluctance-network model and magnetic-equivalent circuit.
References
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Journal ArticleDOI

Eddy currents and wall losses in screened-rotor induction motors

TL;DR: In this paper, the problem of estimating the power losses in a cylindrical corrosion-resistant shell of a fly-by-fly RC motor is investigated. But the results are limited to the case where the rotor is separated from the stator by a thin, corrosion resistant shell.
Journal ArticleDOI

Magnetic Equivalent Circuit Modeling of Induction Motors

TL;DR: In this paper, a methodology for constructing a state-variable model, based on a magnetic equivalent circuit of the motor, is described, which is an excellent compromise between the speed of lumped parameter models and the ability of finite element methods to capture spatial effects.
Journal ArticleDOI

A Generalized Magnetic Circuit Modeling Approach for Design of Surface Permanent-Magnet Machines

TL;DR: The flux produced by stator winding currents and PMs can be calculated accurately and rapidly using the developed model, taking saturation into account, and aids machine dimensioning without the need for computationally expensive finite-element analysis.
Journal ArticleDOI

Analytical Modeling and Analysis of Axial-Flux Interior Permanent-Magnet Couplers

TL;DR: An analytical model is developed, which is able to deal with the complex machine geometry and take into account material properties such as iron saturation and PM characteristics, which shows several advantages in terms of mechanical and magnetic performances over the couplers with surface PMs.
Journal ArticleDOI

Analytical modeling of rotating eddy-current couplers

TL;DR: In this paper, a detailed analytical study of rotational eddy-current couplers is presented, which consist of a permanent-magnet stator and a multilayer conductive rotor.
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