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A Rotating Speed Controller Design Method for Power Levelling by Means of Inertia Energy in Wind Power Systems

机译:用于风力发电系统惯性能量调节的转速控制器设计方法

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摘要

Power fluctuation caused by wind speed variations may be harmful for the stability of the power system as well as the reliability of the wind power converter, since it may induce thermal excursions in the solder joints of the power modules. Using the wind turbine rotor inertia energy for power leveling has been studied before, but no quantified analysis or generic design method have been found. In this paper, the transfer functions from the wind speed to electrical power, electromagnetic torque, and rotating speed are built based on which the rotating speed controller is designed in the frequency domain for power leveling. Moreover, the impact of other parameters on power leveling, including the time constant of maximum power point tracking (MPPT) and the rotor inertia, are also studied. With the proposed optimal design, the power fluctuations are mitigated as much as possible, while the stability of the rotating speed is still guaranteed. Moreover, the oscillation of the electromagnetic torque is also reduced, and the performance of the MPPT is only weakened slightly.
机译:由风速变化引起的功率波动可能会损害电源系统的稳定性以及风力发电转换器的可靠性,因为它可能会在功率模块的焊点中引起热偏移。以前已经研究过使用风力涡轮机转子惯性能量进行功率平衡,但是尚未找到量化分析或通用设计方法。本文建立了从风速到电能,电磁转矩和转速的传递函数,并在频域上设计了转速控制器进行功率均衡。此外,还研究了其他参数对功率水平的影响,包括最大功率点跟踪(MPPT)的时间常数和转子惯性。通过提出的最佳设计,可以最大程度地减轻功率波动,同时仍可确保转速的稳定性。而且,电磁转矩的振荡也被减小,并且MPPT的性能仅略微减弱。

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