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Structural Optimization of a Permanent-Magnet Direct-Drive Generator Considering Eccentric Electromagnetic Force

机译:考虑偏心电磁力的永磁直驱发电机的结构优化

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摘要

Permanent-magnet direct-drive generators (PMDDGs) running at low speed need large electromagnetic force to generate the necessary torque. This type of electromagnetic force is one of the sources for rotor mechanical stress. In actual operation, mechanical stress will be worsened by the rotor imbalance. In this paper, a joint optimization of electromagnetic and stress field analysis is developed for a PMDDG. The mechanical stress and deformation caused by rotor weight, eccentricity, and terminal fault conditions are optimized in transient structural analyses. The proposed method and model are employed to study electromagnetic forces acting on the rotor core of a 7 MW wind turbine generator.
机译:低速运行的永磁直驱发电机(PMDDG)需要很大的电磁力才能产生必要的扭矩。这种电磁力是转子机械应力的来源之一。在实际运行中,转子不平衡会加剧机械应力。本文针对PMDDG进行了电磁场和应力场分析的联合优化。在瞬态结构分析中优化了由转子重量,偏心率和终端故障条件引起的机械应力和变形。所提出的方法和模型用于研究作用在7 MW风力发电机的转子铁心上的电磁力。

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