A Study on the Rotor Design of Line Start Synchronous Reluctance Motor for IE4 Efficiency and Improving Power Factor

Author:

Kim HyunwooORCID,Park Yeji,Oh Seung-Taek,Jang Hyungkwan,Won Sung-Hong,Chun Yon-Do,Lee Ju

Abstract

As international regulations of motor efficiency are strengthened, the line-start synchronous reluctance motor (LS-SynRM) is being studied to improve the efficiency of the electrical motor in industrial applications. However, in industrial applications, the power factor is also an important performance index, but the LS-SynRM has poor power factor due to the saliency characteristic. In this paper, the rotor design of LS-SynRM is performed to improve the efficiency and power factor. First, the barrier design is performed to improve the efficiency and power factor using the response surface method (RSM). Second, the rotor slot design is performed according to the length of bar for synchronization. Lastly, the rib design is performed to satisfy the power factor and the mechanical reliability. The final model through the design process is analyzed using finite element analysis (FEA), and the objective performance is satisfied. To verify the FEA result, the final model is manufactured, and experiment is performed.

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)

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1. Effects of Permanent Magnets on Different Flux Barriers for the AF-SynRMs;Electric Power Components and Systems;2023-12-15

2. Transient Analysis of a Line-Start Synchronous Reluctance Motor with Mixed Stator Winding Configurations;2023 4th International Conference on Communications, Information, Electronic and Energy Systems (CIEES);2023-11-23

3. Design and analysis of a new improved rotor structure in line-start synchronous reluctance motors;Electrical Engineering;2023-10-24

4. Effect of Heat Treatment on Magnetic Properties of Selective Laser Melting Processed INVAR Alloy;2023 International Conference on Electrical Drives and Power Electronics (EDPE);2023-09-25

5. Design and Analysis of Line-Start Synchronous Reluctance Motor Considering the Maximum Inertia and Power Factor;IEEE Transactions on Industry Applications;2023-09

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