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A low-speed linear harmonic generator for grid-tied and stand-alone operation using hybrid excitation topology

机译:一种低速线性谐波发生器,用于使用混合励磁拓扑的网格连接和独立操作

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Since intermediate mechanical conversion mechanisms for speed, torque and motion conversion can be entirely eliminated, the direct-drive wave power generation attracts more and more attention. Among various proposed generators, the permanent-magnet (PM) vernier generator is considered as a viable solution for the wave energy harvesting. This generator can efficiently harness this low-speed and high-power energy source via a so-called vernier effect by utilizing the effective harmonic magnetic field. However, since only PMs are engaged for field excitation and the harmonic magnetic field is adopted, it is incapable to provide a flexible voltage control and power factor improvement. Moreover, the voltage regulation is incredible high. The purpose of this paper is to design a linear harmonic generator for producing electricity in a wave farm. Except for the PM excitation, the proposed generator is equipped with a set of DC field winding for the hybrid excitation. With this merit, the proposed generator exhibits a satisfactory performance for voltage regulation and power factor improvement which is desirable for both grid-tied and stand-alone operation.
机译:由于可以完全消除速度,扭矩和运动转换的中间机械转换机构,因此直接驱动波发电吸引了越来越多的关注。在各种提出的发电机中,永磁体(PM)vernier发生器被认为是波能量收集的可行解决方案。通过利用有效的谐波磁场,该发生器可以通过所谓的vernier效应有效地利用该低速和高功率的能源。然而,由于仅采用PMS进行现场激励并且采用谐波磁场,因此不能提供柔性电压控制和功率因数改进。而且,电压调节令人难以置信的高。本文的目的是设计一种用于在波场生产电力的线性谐波发生器。除了PM激励外,建议的发电机配备了一组用于混合励磁的DC场绕组。通过该优点,所提出的发电机对电压调节和功率因数改进具有令人满意的性能,这对于网格栓和独立操作是期望的。

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