COMPEL - The International Journal for Computation and Mathematics in Electrical and Electronic Engineering

Analytical-based investigation of consequent poles permanent magnet machine: improved air gap flux density formulation

Hajer Jmal
Amal Souissi
Imen Abdennadher
Publication typeJournal Article
Publication date2025-01-10
scimago Q3
SJR0.250
CiteScore1.6
Impact factor1
ISSN03321649, 20545606
Abstract
Purpose

This paper aims to an analytical investigation of a consequent poles (CP) permanent magnet machine, to enhance the accuracy of the predicted air gap flux density and thus of the machine performance.

Design/methodology/approach

The machine under study is obtained by the substitution of the poles machines (PMs) that corresponds to south poles, of a conventional surface PM (SPM) machine, by iron pieces of same geometry. First, the analytical model of the air gap flux density generated by a SPM topology is presented. To fit the CP concept, such model has been rearranged based on a virtual SPM machine. Then, an improved prediction of the CP machine air gap flux density is addressed by the incorporation of a south pole rotor correction function.

Findings

An improved prediction of the consequent pole PM machines air gap flux density is addressed by the incorporation of a south pole rotor correction function.

Originality/value

The paper proposes an original approach to enhance the prediction of the air gap flux density of consequent pole machines despite the different magnetic permeability of the north and south poles.

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