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Electromagnetic and mechanical stress analysis of wind-driven synchronous reluctance generator

机译:风力同步磁阻发电机的电磁和机械应力分析

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The investigation explores the mechanical stress and electromagnetic performance for a wind-driven synchronous reluctance generator (SRG). The change in the mechanical stress due to the presence of centripetal force, wind speed, and rotor speed are evaluated for different thickness of tangential and radial ribs. Moreover, the variation in the electromagnetic feature such as the q- and d-axes flux, reactance ratio, inductance, torque and torque ripple are discussed for different thickness of tangential and radial ribs. Increasing both tangential and radial ribs thickness has an effect on the electromagnetic performance, but it is observed that effect is significantly more with the variation of tangential rib thickness. Similarly, the mechanical stress analysis for rotor design has been explored in this paper. It is observed that high concentration of peak stress on the rotor ribs, which limits the range of rotor speed.
机译:该研究探索了风力驱动的同步磁阻发电机(SRG)的机械应力和电磁性能。对于切向肋和径向肋的不同厚度,评估了由于向心力,风速和转子速度而导致的机械应力变化。此外,针对切向肋和径向肋的不同厚度,讨论了电磁特性的变化,例如q和d轴磁通,电抗比,电感,转矩和转矩波动。增大切向肋和径向肋的厚度都会对电磁性能产生影响,但是观察到,随着切向肋厚度的变化,这种影响会更大。同样,本文还研究了转子设计的机械应力分析。可以看出,转子肋上的峰值应力集中很大,这限制了转子速度的范围。

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