基于俯仰角和转子转速控制器性能评估的变速风力机功率曲线修正

M. Zamani, G. H. Riahy, A. Ardakani
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引用次数: 8

摘要

风力机功率曲线忽略了风的动力特性,将风力机功率表示为平均风速的函数。功率曲线并不能很好地估计变速风力发电机的功率。因为,除了平均风速之外,这些涡轮机的输出功率高度依赖于风的动态。本文通过引入一种新的曲线——控制器功率曲线,提出了一种根据风力动力学对变速风力机功率曲线进行修正的方法。控制器的功率曲线是一条三维曲线,它代表了由于控制器的性能而产生的电量,同时考虑了风的特性和控制器对瞬时风速变化的反应。在该方法中,风的EPF代表了风的动力学。并利用可控性因子对控制器的性能进行了仿真。仿真研究表明了基于控制器功率曲线的方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modifying power curve of Variable Speed Wind Turbines by Performance Evaluation of Pitch-Angle and Rotor Speed Controllers
The Power curve of wind turbine ignores the dynamic behavior of the wind and represents the wind turbine power as a function of the average wind speed. Power curve is not an adequate tool for estimating the power of variable speed wind turbines. Because, in addition to average wind speed, the output power of these turbines is highly dependent on the dynamic of the wind. In this paper, by introducing a new curve named controllers power curve, a method is presented to modify power curve of variable speed wind turbines according to the wind dynamics. The controllers' power curve is a 3-D curve that represent the amount of electrical power that generated because of controllers' performance taking to account the wind characteristics and reactions of controllers to instantaneous wind speed variations. In proposed method, the EPF of the wind represents the wind dynamics. Also the controllers' performance is simulated using a new factor named controllability factor. Simulation studies showed the effectiveness of the proposed method based on controllers' power curve.
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