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Power angle control of grid-connected doubly fed induction generator wind turbines for fault ride-through

机译:用于故障穿越的并网双馈感应发电机风力发电机的功率角控制

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This study proposes a power angle control strategy of grid-connected doubly fed induction generators (DFIGs) to improve the transient performance during grid fault ride-through (FRT). The proposed power angle control can efficiently restrict the rotor-side current under a limited converter rating, support the terminal voltage of DFIGs and hence improve system stability during the fault period. In this study, the power angle of DFIGs in a multi-machine power system is defined firstly and then the relation between the defined power angle and rotor-side current surge and terminal voltage dip of DFIGs are analysed, respectively. Based on the analysis, control of DFIG power angle is implemented expediently on the existing flux magnitude and angle control (FMAC) scheme of DFIGs as an improved FMAC scheme. In this study, two test examples are presented to demonstrate and validate the effectiveness of improved FMAC with power angle control and to compare it with the conventional PQdq control and FMAC. Simulation results show that it can significantly enhance the FRT capability of grid-connected DFIGs.
机译:这项研究提出了并网双馈感应发电机(DFIG)的功率角控制策略,以改善电网故障穿越(FRT)期间的暂态性能。提出的功率角控制可以在有限的转换器额定值下有效地限制转子侧电流,支持DFIG的端电压,从而提高故障期间的系统稳定性。在本研究中,首先定义了多机电力系统中双馈发电机的功率角,然后分别分析了所定义的功率角与转子侧电流浪涌和双馈发电机端电压骤降之间的关系。在分析的基础上,DFIG功率角的控制可以方便地在现有的DFIG的磁通量和角度控制(FMAC)方案上进行,作为改进的FMAC方案。在这项研究中,提供了两个测试示例,以演示和验证改进的FMAC与功率角控制的有效性,并将其与常规PQdq控制和FMAC进行比较。仿真结果表明,该方法可以显着增强并网双馈双馈式发电机的FRT能力。

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