[Case Study] Analysis of Air Gap Magnetic Flux Density in Built-in Magnet Synchronous Motors
Understanding the magnetic flux density in the air gap is important! Here are some examples of magnetic flux density analysis for the relevant area.
We would like to introduce our analysis of the "Air Gap Magnetic Flux Density Analysis of Embedded Magnet Synchronous Motors (IPMSM)." The analysis mode used was transient response analysis, and the driving condition was no load at 3,000 min-1, with the analysis executed at the 45° position in the right diagram for 1/8 of the area (2D). As a result of the analysis, it was found that the magnetic flux density penetrating the air gap between the stator and rotor changes relative to the excitation timing of the stator coil of the rotating rotor. Therefore, analyzing the dynamic behavior is considered an effective approach. 【Analysis Conditions】 ■ Analysis Mode: Transient Response Analysis ■ Motor Specifications: 3-phase / 8-pole / 48-slot, distributed winding ■ Driving Conditions: No load / 3,000 min-1 ■ Analysis executed at the 45° position in the right diagram for 1/8 of the area (2D) ■ The air gap (air layer) between the stator and rotor is processed in 4 layers *For detailed information about this case, please refer to the related links. For more information, feel free to contact us.
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At N.S.T, we provide a variety of support to comprehensively assist our customers in better manufacturing, ranging from the provision of diverse analysis tools to their utilization methods and contract analysis. Our company offers truly usable numerical analysis tools and seamlessly supports the introduction and operation of these tools by leveraging the know-how gained through our extensive experience in the field of numerical analysis.