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Back-to-back converter state-feedback control of DFIG (doubly-fed induction generator)-based wind turbines

机译:基于DFIG(双馈感应发电机)的风力发电机的背靠背变流器状态反馈控制

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Control of DFIG (doubly-fed induction generator) is traditionally based on PI (proportional-integral) controllers and recently many papers have proposed sliding-mode based controllers. However, such controllers may excite unmodeled high-frequency system transients due to chattering, resulting in oscillations or even in unforeseen instability. In order to overcome these drawbacks, this paper proposes a internal model state-feedback control strategy for regulation of rotor direct and quadrature currents for wind driven DFIG, which can keep the smooth control signal of the classical PI controller and, at the same time, provides robustness to external disturbances. The currents are controlled in order to accomplish reactive power support to the grid and MPPT (maximum power point tracking). The proposed state-feedback control strategy as well as the classical PI and the VS-MRAC (variable-structure model reference adaptive control) sliding-mode strategy were discretized and implemented in a digital signal processor in order to interact with a real-time digital simulation of the DFIG-based wind energy conversion system. The proposed control structure achieved the fastest and the most robust dynamic response without stressing the converters or deteriorating the power quality. (C) 2015 Elsevier Ltd. All rights reserved.
机译:传统上,双馈感应发电机(DFIG)的控制是基于PI(比例积分)控制器的,最近许多论文提出了基于滑模的控制器。但是,此类控制器可能会因颤动而激发出未建模的高频系统瞬变,从而导致振荡,甚至导致无法预料的不稳定。为了克服这些缺点,本文提出了一种内部模型状态反馈控制策略,用于调节风力驱动的双馈发电机的转子直流和正交电流,该策略可以保持传统PI控制器的平滑控制信号,同时,为外部干扰提供鲁棒性。控制电流以实现对电网和MPPT(最大功率点跟踪)的无功功率支持。提出的状态反馈控制策略以及经典的PI和VS-MRAC(可变结构模型参考自适应控制)滑模策略已离散化并在数字信号处理器中实现,以便与实时数字交互基于DFIG的风能转换系统的仿真。所提出的控制结构实现了最快,最鲁棒的动态响应,而不会给转换器造成压力或降低电源质量。 (C)2015 Elsevier Ltd.保留所有权利。

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