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Dynamic State Estimation Based Control Strategy for DFIG Wind Turbine Connected to Complex Power Systems

机译:基于动态状态估计的双馈双馈风力发电机并网控制策略

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This paper proposes a viable solution to the long-lasting issue of using flux-involved control scheme to regulate the behavior of doubly fed induction generator (DFIG) during faults. Instead of trying to design a complicated method to measure flux, which cannot be directly measured with contemporary technology, the solution utilizes unscented Kalman filter-based dynamic state estimation of DFIG connected to a complex power system to estimate the wanted variables. The decentralized estimation scheme takes into consideration the overall power system network and uses only local noisy PMU measurement data. DFIG control schemes are also investigated to a fair extent where three control methods are discussed with comparison results presented. The improved control scheme displays a better fault recovery response and system compatibility. A number of considerations are taken into account in the design of DFIG control schemes, including reactive power supports and dc-link current compensation.
机译:本文提出了一个可行的解决方案,解决了使用磁通量控制方案来调节故障期间双馈感应发电机(DFIG)行为的长期问题。该解决方案没有尝试设计一种复杂的方法来测量通量,而该方法无法用现代技术直接测量,而是利用基于无味卡尔曼滤波器的DFIG动态状态估计来连接所需的变量,该DFIG连接到复杂的电源系统。分散估计方案考虑了整个电力系统网络,仅使用本地噪声PMU测量数据。还对DFIG控制方案进行了相当广泛的研究,其中讨论了三种控制方法并给出了比较结果。改进的控制方案显示了更好的故障恢复响应和系统兼容性。 DFIG控制方案的设计中考虑了许多因素,包括无功功率支持和直流链路电流补偿。

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