根据实际现场数据在风电场内生成高分辨率风速和风速阵列

A. Attya, T. Hartkopf
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引用次数: 12

摘要

本文提出了一个详细的模型,可以在1秒的时间步长内生成某一地点的风速数据。这个精细的时间步长可以用来研究风能渗透对电力系统稳定性的影响(从电压和频率的角度来看是动态的和静态的)。在此基础上,提出了一种简化算法,仅根据进入风电场的初始风流并考虑转子和塔架阴影的尾迹效应来估计风电场中各风力机的风速阵。考虑风力机与不同风速的风之间的间距所造成的时间延迟,这些风速阵列是同步的。这些风速是风电场电能和动能(特别是在频率下降的情况下)聚集过程的基本输入。利用MATLAB对所提出的技术进行了仿真,并绘制了本文给出的所有图形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of high resolution wind speeds and wind speed arrays inside a wind farm based on real site data
This paper presents a detailed model to generate wind speed data for a certain site in a time step that can reach 1 second. This fine time step could be implemented to study the effect of wind energy penetration on the power system stability (Dynamic and static from the point of views of voltage and frequency). Moreover, a simplified algorithm is proposed to estimate the wind speed array for each wind turbine in a wind farm depending only on the initial wind stream incoming to the wind farm and considering the wake effect due to the rotor and tower shadowing. These wind speed arrays are synchronized as the time delays due to the spacing between wind turbines and the wind different velocities are considered. These wind speeds are the basic input for the wind farm electrical power and kinetic energy (especially in case of frequency drops) aggregation procedures. MATLAB was used to simulate the proposed techniques and plotting all the graphs presented in this paper.
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