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Control of a Small Wind Turbine in the High Wind Speed Region

机译:高风速区的小型风力发电机的控制

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This paper proposes a new soft-stalling control strategy for grid-connected small wind turbines operating in the high and very high wind speed conditions. The proposed method is driven by the rated current/torque limits of the electrical machine and/or the power converter, instead of the rated power of the connected load, which is the limiting factor in other methods. The developed strategy additionally deals with the problem of system startup preventing the generator from accelerating to an uncontrollable operating point under a high wind speed situation. This is accomplished using only voltage and current sensors, not being required direct measurements of the wind speed nor the generator speed. The proposed method is applied to a small wind turbine system consisting of a permanent magnet synchronous generator (PMSG) and a simple power converter topology. Simulation and experimental results are included to demonstrate the performance of the proposed method. The paper also shows the limitations of using the stator back electromotive force to estimate the rotor speed in PMSG connected to a rectifier, due to significant d-axis current at high load.
机译:本文为在高风速和极高风速条件下运行的并网型小型风力涡轮机提出了一种新的软滞后控制策略。所提出的方法由电机和/或功率转换器的额定电流/转矩极限来驱动,而不是由所连接负载的额定功率来驱动,这是其他方法中的限制因素。所开发的策略还解决了系统启动的问题,该系统启动阻止了发电机在高风速情况下加速到无法控制的工作点。这仅使用电压和电流传感器即可完成,不需要直接测量风速或发电机速度。所提出的方法应用于由永磁同步发电机(PMSG)和简单的功率转换器拓扑组成的小型风力发电机系统。仿真和实验结果都包括在内,以证明所提方法的性能。本文还显示了使用定子反电动势来估算连接到整流器的PMSG中转子速度的局限性,这是由于高负载下的d轴电流很大。

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