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Performance improvement of DFIG-based wind farm using multilevel cascaded H-bridge converter under unbalanced grid voltage conditions

机译:在不平衡电网电压条件下使用多级级联H桥转换器的基于DFIG的风电场的性能改进

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This paper presents a new configuration of doubly fed induction generator (DFIG)-based wind farm with multilevel cascaded H-bridge (CHB) converter and its control system, which is suitable not only for unbalanced grid voltage conditions, but also for small voltage sags. The proposed configuration of DFIG can balance the point of common coupling (PCC) voltage without needing additional DC link capacitor or energy storage unlike other configurations and methods. Consequently, the stator voltage and the other loads voltage connected to the PCC are kept constant at the nominal value. The new configuration improves all the DFIG signals under unbalanced grid voltage and small voltage sag conditions unlike other methods. Some of the DFIG units in wind farm require to connect the CHB converter, therefore, it is cost-effective. Matlab/Simulink is used for simulation of a 13.5-MW wind farm consisting of nine 1.5-MW DFIG units and the results demonstrate the good efficiency of the proposed scheme.
机译:本文提出了一种基于双馈感应发电机(DFIG)的具有多级串联H桥(CHB)转换器的风电场及其控制系统的新配置,该配置不仅适用于电网电压不平衡的情况,也适用于小电压暂降。与其他配置和方法不同,DFIG的建议配置可以平衡公共耦合(PCC)电压点,而无需额外的DC链路电容器或能量存储。因此,连接到PCC的定子电压和其他负载电压保持恒定在标称值。与其他方法不同,新配置改善了在不平衡电网电压和小电压骤降条件下的所有DFIG信号。风电场中的某些DFIG单元需要连接CHB转换器,因此,它具有成本效益。 Matlab / Simulink用于模拟由9个1.5 MW DFIG单元组成的13.5 MW风力发电场,结果证明了该方案的良好效率。

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