DOE PAGES title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Electromagnetic Design Optimization Integrated with Mechanical Stress Analysis of PM-Assisted Synchronous Reluctance Machine Topologies Enabled with a Blend of Magnets

Journal Article · · Energies
DOI: https://doi.org/10.3390/en17081873 · OSTI ID:2337535

Permanent Magnet-Assisted Synchronous Reluctance Machines (PMASynRM) provide a low-cost alternative to Surface PM Machines due to the use of relatively lower grades of rare-earth (RE) or RE-free magnets, as the performance degradation due to weaker magnets is compensated by the presence of reluctance torque. However, the weaker magnets suffer from a high risk of demagnetization, leading to unreliable motor operation. Using a blend of RE and RE-free magnets has the potential to overcome this issue. This paper proposes to blend different grades of various rare-earth (RE) and rare-earth-free (RE-free) magnets in six different combinations and utilizes them in two-layer and three-layer U-shaped PMASynRM topologies with both eight-pole and six-pole variations. The rotor of the various designs is then optimized using a differential evolution (DE) based optimization algorithm to obtain low-cost designs with reduced RE magnet volume and minimum demagnetization risk. The optimization of each design is also integrated with the evaluation of mechanical stresses in the rotor laminations so as to maintain the stresses below the material yield strength. Furthermore, the various performance metrics, such as toque–speed/power–speed characteristics, demagnetization, and efficiency maps, are evaluated for each of the optimized and mechanically feasible designs. A quantitative comparison of the various optimized designs is also obtained to highlight the various trade-offs. The results indicate the feasibility of meeting the baseline torque requirement across the entire speed range, even with a 100% reduction in RE magnet volume and less than 5% demagnetization risk, while achieving a cost reduction exceeding 50%. Moreover, the two-layer, eight-pole designs exhibit relatively higher performance, whereas the three-layer, eight-pole designs are found to be the most economical option.

Sponsoring Organization:
USDOE
Grant/Contract Number:
EE0009190
OSTI ID:
2337535
Journal Information:
Energies, Journal Name: Energies Journal Issue: 8 Vol. 17; ISSN 1996-1073; ISSN ENERGA
Publisher:
MDPI AGCopyright Statement
Country of Publication:
Switzerland
Language:
English

References (34)

Design of Ferrite-Assisted Synchronous Reluctance Machines Robust Toward Demagnetization journal May 2014
Comparative Analysis of Two Different Types of Blended Permanent Magnet Assisted Synchronous Reluctance Machine conference October 2021
Analysis and Design Optimization of an Improved Axially Magnetized Tubular Permanent-Magnet Machine journal June 2004
Machine design optimization based on finite element analysis in a high-throughput computing environment conference September 2012
Low-Cost Ferrite PM-Assisted Synchronous Reluctance Machine for Electric Vehicles journal October 2014
A General Model for Estimating the Laminated Steel Losses Under PWM Voltage Supply journal July 2010
Optimization of Two-Phase In-Wheel IPMSM for Wide Speed Range by Using the Kriging Model Based on Latin Hypercube Sampling journal May 2011
Cost-Effectiveness Hybrid Permanent Magnet Assisted Synchronous Reluctance Machine for Electric Vehicle conference May 2021
Optimization of the Magnetization Direction of Magnets in a Permanent Magnet Assisted Synchronous Reluctance Machine to Minimize Demagnetization conference May 2023
Minimization of Rare-Earth Permanent Magnets and Demagnetization Risk in PM-assisted Synchronous Reluctance Motor with Blended Magnets conference October 2023
Permanent-Magnet Minimization in PM-Assisted Synchronous Reluctance Motors for Wide Speed Range journal January 2013
Finite-Element Surrogate Model for Electric Machines With Revolving Field—Application to IPM Motors journal November 2010
Analysis of Rotor Saturation in Synchronous Reluctance and PM-Assisted Reluctance Motors journal January 2015
Design of Magnet Arrangement in Interior Permanent Magnet Synchronous Motor by Response Surface Methodology in Consideration of Torque and Vibration journal May 2011
Modern Electrical Machine Design Optimization: Techniques, Trends, and Best Practices journal October 2018
Design optimization of IPM machines for efficient operation in extended speed range conference June 2015
Ultrafast Finite-Element Analysis of Brushless PM Machines Based on Space journal March 2011
Low-Cost Interior Permanent Magnet Machine With Multiple Magnet Types journal March 2020
Performance of PMASynRM With Ferrite Magnets for EV/HEV Applications Considering Productivity journal July 2014
Interior permanent magnet machines with rare earth and ferrite permanent magnets conference May 2017
Fast Multi-Objective CMODE-Type Optimization of PM Machines Using Multicore Desktop Computers journal July 2016
Investigation of Permanent Magnet assisted Synchronous Reluctance Machines for Traction Drives in High Power Flux Weakening Operation conference June 2020
Reduction of Computational Efforts in Finite Element-Based Permanent Magnet Traction Motor Optimization journal February 2018
Multi-objective Design Optimization of a Blended Permanent Magnet Assisted Synchronous Reluctance Machine conference May 2021
Optimal design of slotless tubular linear brushless PM machines using metaheuristic optimization techniques journal January 2017
Multi-Objective Design Optimization and Comparison of 2-layer versus 3-layer PM-Assisted Synchronous Reluctance Machines using a Blend of Rare-Earth and Rare-Earth-Free Magnets conference October 2023
A Review of Electrical Machine Optimization Medthods with Emphasis on Computational Time conference May 2019
Design Optimization and Comparison of PM-Assisted Synchronous Reluctance Machine using Different Magnet Combinations conference October 2022
Cost-Effective High Torque Density Bi-Magnet Machines Utilizing Rare Earth and Ferrite Permanent Magnets journal September 2020
Interior PM Machines Using Ferrite to Replace Rare-Earth Surface PM Machines journal March 2014
Multidisciplinary Design Analysis and Optimization of a PM Transverse Flux Machine With Soft Magnetic Composite Core journal November 2015
Design and Analysis of a Hybrid Permanent Magnet Assisted Synchronous Reluctance Motor Considering Magnetic Saliency and PM Usage journal April 2018
Multiobjective optimization of IPM synchronous motor using Response Surface Methodology and filtered Monte Carlo approach conference September 2014
Modeling and design optimization of PM AC machines using computationally efficient - finite element analysis conference September 2010