Analytical modeling of disc-type permanent magnet hysteresis motor in steady-state operational conditions

Author:

Behniafar Ali,Darabi Ahmad

Abstract

Purpose In this paper, a new structure for the permanent magnet hysteresis synchronous (PMHS) motor is introduced. Moreover, this paper aims to presents a new analytical method for modeling of a disc-type PMHS motor. Design/methodology/approach Because the hysteresis and permanent magnet motors have unique characteristics, a motor (the PMHS motor) with excellent performance features can be achieved by combining them. Choosing a disc-type slotless structure causes the major advantages of both motors to be preserved in the new motor. To analyze PMHS motor, mathematical equations are obtained by using Ampere’s circuital law, flux continuity law and Faraday’s law. Then the air-gap voltage and exciting current of the motor can be calculated. To implement this method, a new iterative algorithm is proposed. This algorithm consists of one-iteration loop for each input voltage to find the maximum flux density of the operational hysteresis loop of the motor. Findings Validity of the analytical approach is confirmed by experimental results. A reasonably close agreement between the two is shown and some outstanding performances of the PMHS motor are demonstrated. Originality/value A new structure for PMHS motor and also a new analytical method for performance prediction of this motor is presented.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Reference21 articles.

1. A new method for improved design of low speed axial flux permanent magnet machines used in HEV;Tabriz Journal of Electrical Engineering,2015

2. Design of high-speed hybrid hysreresis motor rotor using finite element model and decision process;IEEE Transaction on Magnetics,2014

3. Transient performance analysis for permanent-magnet hysteresis synchronous motor;IEEE Transactions on Industry Applications,2004

4. Very fast field oriented control for permanent magnet hysteresis synchronous motor;Iranian Journal of Electrical & Electronic Engineering,2006

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