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Analysis of the control limit for rotor-side converter of doubly fed induction generator-based wind energy conversion system under various voltage dips

机译:不同电压骤降下基于双馈感应发电机的风能转换系统转子侧变流器的控制极限分析

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摘要

For the grid-connected doubly-fed induction generator (DFIG)-based wind energy conversion system (WECS), many improved control algorithms have been developed for the rotor-side converter (RSC) to suppress the overcurrents in the rotor-side under voltage dips. However, such objective can hardly be achieved under severe grid fault conditions because of the limitation of RSCs output voltage. An analysis tool is proposed to estimate the the theoretical control limit of the RSC in suppressing the shortcircuit rotor currents during grid faults in this study. The tool is based on the optimisation theory and takes the practical constraints of the RSC into account. To execute the analysis, a simplified DFIG model with decoupled stator and rotor fluxes is presented, and the low-voltage ride through (LVRT) problem can be formulated as an optimisation problem, which intends to suppress the rotor winding currents with voltage constraints. The Pontryagin??s minimum principle is employed to solve the optimisation problem and the results can identify the control limit of the RSC. A case study based on a typical 1.5 MW DFIG-based WECS under various grid voltage dips is carried out to validate the analytical method. The proposed method is also further verified by experimental tests on a scaled 3 KW DFIG system. The results are expected to help the manufacturers to assess and improve their RSC controllers or LVRT measures.
机译:对于基于并网双馈感应发电机(DFIG)的风能转换系统(WECS),已经为转子侧变流器(RSC)开发了许多改进的控制算法,以抑制转子侧欠压中的过电流。蘸。然而,由于RSCs输出电压的限制,在严重的电网故障条件下很难实现该目的。本文提出了一种分析工具来估计RSC在抑制电网故障期间转子短路电流时的理论控制极限。该工具基于优化理论,并考虑了RSC的实际约束。为了进行分析,提出了一种简化的具有定子和转子磁通解耦的DFIG模型,并且可以将低压穿越(LVRT)问题公式化为一个优化问题,目的是抑制带有电压约束的转子绕组电流。采用庞特里亚金的最小原理解决了优化问题,其结果可以确定RSC的控制极限。基于典型的基于1.5 MW DFIG的WECS在各种电网电压骤降下的案例研究来验证该分析方法。在规模化的3 KW DFIG系统上,通过实验测试进一步验证了所提出的方法。预期结果将有助于制造商评估和改进其RSC控制器或LVRT措施。

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