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Design and Multi-Mode Operation of Double-Stator Toroidal-Winding PM Vernier Machine for Wind-Photovoltaic Hybrid Generation System

机译:风力光伏混合发电系统双定子环形缠绕永磁游标机的设计与多模式运行

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摘要

This paper proposes the design and multi-mode operation of a new double-stator toroidal-winding permanent-magnet vernier (DSTW-PMV) machine, which is for the wind-photovoltaic (W-PV) hybrid generation system. In the W-PV system, the wind and PV power are complementary with each other for power variation reduction. Through the multi-mode operation, the output voltage of the machine can be stabilized with high continuity under different rotational speeds to solve the inherently indeterminate wind speed problem and further improve the power smoothness of the whole W-PV system. First, the machine optimization is carried out to obtain the optimal pole-pair combination and geometrical topology for the proposed machine. Second, based on the optimal topology, the multi-mode operation principle of the output voltage adjustment is illustrated. By utilizing the diversities of the toroidal winding configurations and terminal connection strategies, the proposed machine accommodates 54 operating modes with different output voltages under rated speed. Accordingly, under the rated output voltage, the machine speed can be extended to three rated speed with high continuity. Furthermore, some modes generate the rated output voltage with identical speed, which contributes to the high redundancy and high operating efficiency. Hence, with the multi-mode operation and the auxiliary of the PV power, the whole power generation system accommodates the higher flexibility, stability, reliability, and efficiency.
机译:本文提出了一种新的双定子环形绕组永磁游标(DSTW-PMV)机器的设计和多模式运行,该机器用于风力光伏(W-PV)混合发电系统。在W-PV系统中,风能和PV功率彼此互补,以减少功率变化。通过多模式操作,可以在不同转速下以高连续性稳定电机的输出电压,从而解决固有的风速不确定性,并进一步提高整个W-PV系统的电源平滑度。首先,对机器进行优化,以获得拟议机器的最佳极对组合和几何拓扑。其次,基于最佳拓扑,阐述了输出电压调节的多模式工作原理。通过利用环形绕组配置和端子连接策略的多样性,所提出的电机可在额定转速下适应54种具有不同输出电压的运行模式。因此,在额定输出电压下,机器速度可以连续性高地扩展到三个额定速度。此外,某些模式会以相同的速度生成额定输出电压,这有助于实现高冗余度和高运行效率。因此,借助多模式操作和光伏发电的辅助,整个发电系统可容纳更高的灵活性,稳定性,可靠性和效率。

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