Design of a 3 kW PMSM with Super Premium Efficiency

Author:

Ion Catalin PetreaORCID,Calin Marius DanielORCID,Peter Ioan

Abstract

Extended use of permanent magnet synchronous motors (PMSMs) has brought the need to design motors that can comply with the latest requirements in terms of efficiency. This paper presents different configurations in the case of a 3 kW PMSM with two pole pairs, focusing on finding the optimal constructive solutions to ensure that it falls within the IE4 efficiency class. Six virtual prototypes were developed and simulated using the Altair FluxMotor software. A detailed comparison between the simulated versions was carried out in terms of overall efficiency, torque ripple, weight and flux density, with the focus on the nominal operating point. The results show that the virtual prototype with a relatively simple rotor design but higher stator slots number had the best results in terms of efficiency and torque ripple at the nominal operating point.

Funder

Ministry of Research, Innovation, and Digitalization through the Operational Program Competitivity, Romania

Transilvania University of Brasov

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference20 articles.

1. (2014). Rotating Electrical Machines—Part 30-1: Efficiency Classes of Line Operated AC Motors (IE Code) (Standard No. IEC 60034-30-1:2014).

2. Reduction of Eddy-Current Losses in Fractional-Slot Concentrated-Winding Synchronous PM Machines;Choi;IEEE Trans. Magn.,2016

3. Reduction of Magnet Eddy Current Loss in PMSM by Using Partial Magnet Segment Method;Wang;IEEE Trans. Magn.,2019

4. Iron Loss Reduction in Permanent Magnet Synchronous Motor by Using Stator Core Made of Nanocrystalline Magnetic Material;Denis;IEEE Trans. Magn.,2017

5. High Power Density PMSM with Lightweight Structure and High-Performance Soft Magnetic Alloy Core;Fang;IEEE Trans. Appl. Supercond.,2019

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