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Design of a Robust Grid Interface System for PMSG-Based Wind Turbine Generators

机译:基于PMSG的风力发电机鲁棒电网接口系统的设计

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A robust and reliable grid power interface system for wind turbines using a permanent-magnet synchronous generator (PMSG) is proposed in this paper, where an integration of a generator-side three-switch buck-type rectifier and a grid-side Z-source inverter is employed as a bridge between the generator and the grid. The modulation strategy for the proposed topology is developed from space-vector modulation and Z-source network operation principles. Two PMSG control methods, namely, unity-power-factor control and rotor-flux-orientation control $(I_{d} = 0)$, are studied to establish an optimized control scheme for the generator-side three-switch buck-type rectifier. The system control scheme decouples active- and reactive-power control through voltage-oriented control and optimizes PMSG control for the grid- and generator-side converters independently. Maximum power point tracking is implemented by adjusting the shoot-through duty cycles of the Z-source network. The design considerations of the passive components are also provided. The performances and practicalities of the designed architecture have been verified by simulations and experiments.
机译:本文提出了一种使用永磁同步发电机(PMSG)的用于风力涡轮机的鲁棒且可靠的电网电源接口系统,该系统集成了发电机侧三开关降压型整流器和电网侧Z源逆变器被用作发电机和电网之间的桥梁。从空间矢量调制和Z源网络操作原理出发,提出了针对所提出拓扑的调制策略。研究了两种永磁同步电动机控制方法,即单位功率因数控制和转子磁通方向控制$(I_ {d} = 0)$,以建立发电机侧三开关降压型最优控制方案。整流器。该系统控制方案通过面向电压的控制使有功和无功功率控制解耦,并分别针对电网侧和发电机侧的转换器优化PMSG控制。通过调整Z源网络的直通占空比来实现最大功率点跟踪。还提供了无源组件的设计注意事项。通过仿真和实验验证了所设计架构的性能和实用性。

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