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Reduction of Cogging Force in Linear Permanent-Magnet Generators

机译:降低线性永磁发电机的齿槽力

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摘要

Although linear permanent-magnet generators (LPMGs) are widely used for converting wave energy into electrical energy, they suffer from large cogging force. The cogging force causes oscillatory output power, which shortens lifetime and increases the maintenance costs of the generators. To reduce this force in the generator, we have designed and simulated a three-phase LPMG for direct wave energy conversion and predicted its performance using the finite-element method. We studied the influence of different design parameters on the cogging force and minimized this force by varying the proposed parameters. The results obtained confirm a large reduction in the cogging force and an enhancement in the generator performance.
机译:尽管线性永磁发电机(LPMG)已广泛用于将波能转换为电能,但它们承受着很大的齿槽力。齿槽力导致振荡的输出功率,这缩短了寿命并增加了发电机的维护成本。为了减小发电机中的这种力,我们设计并仿真了用于直接波能量转换的三相LPMG,并使用有限元方法预测了其性能。我们研究了不同设计参数对齿槽力的影响,并通过更改建议的参数将其最小化。获得的结果证实了齿槽力的大大降低和发电机性能的提高。

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