风力发电场的简化阶数建模,以纳入大型电力系统模拟中的一次频率响应应用

Sudipta Ghosh, N. Senroy, S. Kamalasadan
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引用次数: 7

摘要

本文介绍了变速风电场的降阶线性化动态模型。WF的单个涡轮模型是一个双质量模型,并假设在最大功率点跟踪控制策略下运行。本文研究了基于螺距的WF减载和一种利用动态线性化模型模拟惯性并支持一次频率控制的控制方案。该模型将风速、系统频率与电场输出功率线性化。通过对某电厂实际非线性DFIG的仿真验证,该模型具有良好的仿真性能指标。这种降阶模型的主要优点是它能够预测动态频率响应,从而允许基于频率响应的WF控制策略。节省的计算工作量是显著的,几乎没有准确性的损失。
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Reduced order modeling of wind farms for inclusion in large power system simulations for primary frequency response application
A reduced order linearized dynamic model for a variable speed wind farm (WF) is introduced in this paper. The individual turbine model for the WF is a two mass model and assumed to be operating under maximum power point tracking control strategy. This paper studies pitch based deloading of WF and a control scheme to emulate inertia and support primary frequency control using a dynamic linearized model. The model is linearized between the wind velocity and system frequency vs power output of farm. The model is validated against an actual nonlinear DFIG based WF simulated in Dig-SILENT Power Factory with efficient simulation performance indices. The main advantage of this reduced order model is its capability to predict dynamic frequency response and thus allows frequency response based control strategy for the WF. The savings in computational efforts are significant, with little loss of accuracy.
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