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首页> 外文期刊>IEEE Transactions on Energy Conversion >A Controllable Power Distribution Strategy for Open Winding Hybrid Excitation Generator System
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A Controllable Power Distribution Strategy for Open Winding Hybrid Excitation Generator System

机译:开放式绕组混合励磁发电机系统的可控配电策略

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摘要

The open winding permanent magnet generator system is suitable for applications such as renewable energy power generation systems with multiple power sources, due to its high power density, relatively few power switches, and high degree of integration. However, for this system, it is difficult to quantitatively control the power distribution between different energy sources. In this paper, an open winding hybrid excitation generator system is presented, and for this system, a controllable power distribution strategy is investigated. In the proposed strategy, the excitation current is regulated according to the error in the current loop of the auxiliary energy source, which can achieve the regulation of the output power of the generator and finally realize the power quantitative control of the auxiliary energy source. Then, the topologies of the hybrid excitation machine are analyzed and chosen with emphasize on the influence of the flux regulation capability on the control capability of system power distribution. The experiments are carried out on a parallel hybrid excitation flux-switching (PHEFS) generator system, and the results verify the correctness and effectiveness of the proposed controllable power distribution strategy and the power distribution capability of the PHEFS generator.
机译:开放式绕组永磁发电机系统具有高功率密度,相对较少的功率开关和高集成度,因此适合诸如具有多个电源的可再生能源发电系统之类的应用。然而,对于该系统,难以定量地控制不同能量源之间的功率分配。本文提出了一种开放式绕组混合励磁发电机系统,并针对该系统研究了可控的配电策略。该策略根据辅助能源电流回路中的误差来调节励磁电流,可以实现发电机输出功率的调节,最终实现了辅助能源的功率定量控制。然后,重点研究了磁通调节能力对系统配电控制能力的影响,对混合励磁机的拓扑结构进行了分析和选择。在并联混合励磁磁通切换(PHEFS)发电机系统上进行了实验,结果验证了所提出的可控功率分配策略和PHEFS发电机的功率分配能力的正确性和有效性。

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