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Research on frequency control method for micro-grid with a hybrid approach of FFR-OPPT and pitch angle of wind turbine

机译:具有混合耦合的微电网频率控制方法研究及风力涡轮机的俯仰角

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Micro-grid is the main application scenario of the renewable energy. When wind power serves as the dominant source of the micro-grid, the uncertainty of the wind energy caused by the climate makes the maintenance of the frequency stability of the micro-grid more complicated. Provided in this paper is a novel method to control the electrical output of WTG to maintain the frequency of the micro-grid close to its target. Firstly, a fast frequency response optimized power point tracking method (FFR-OPPT) is designed. The double excitation from the first-order and second-order derivative of the grid frequency can improve the speed of kinetic energy extraction of the wind turbine due to the increase of the virtual inertia time constant. Secondly, in order to enhance the service life of wind turbine, a hybrid control strategy of FFR-OPPT and pitch angle is proposed based on boundary analysis of the wind turbine. The control strategy can reduce the adjustment frequency and range of the pitch angle of wind turbine significantly. The proposed method is tested in a micro-grid combining by wind turbines and small thermal generations. The load frequency control in micro-grid is dominated by wind turbine and is assisted by thermal generation. The simulation results illustrate that the control strategy can control the frequency of microgrid close to its schedule value effectively, accompanied by decrease of the frequency and range of pitch angle adjustment during control process.
机译:微网格是可再生能源的主要应用场景。当风力发电作为微电网的主导来源时,由气候引起的风能的不确定性使得维持微网格的频率稳定性更复杂。本文提供了一种控制WTG电气输出的新方法,以将微网的频率保持在其目标。首先,设计了一种快速频率响应优化功率点跟踪方法(FFR-OPPT)。由于虚拟惯性时间常数的增加,来自电网频率的一阶和二阶导数的双激发可以提高风力涡轮机的动能提取的速度。其次,为了提高风力涡轮机的使用寿命,基于风力涡轮机的边界分析提出了FFR-OPPT和俯仰角的混合控制策略。控制策略可以显着降低风力涡轮机的调节频率和范围。所提出的方法在由风力涡轮机和小型热代组合的微电网中进行测试。 Micro-Grid中的负载频率控制由风力涡轮机主导,并通过热发电辅助。仿真结果表明,控制策略可以有效地控制微电网的频率接近其调度值,伴随着控制过程期间俯仰角度调整的频率和范围的降低。

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