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A Wind Farm Active Power Dispatch Strategy Considering the Wind Turbine Power-Tracking Characteristic via Model Predictive Control

机译:通过模型预测控制考虑风电功率跟踪特性的风电场有功调度策略

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In this paper, an industrial application-oriented wind farm automatic generation control strategy is proposed to stabilize the wind farm power output under power limitation conditions. A wind farm with 20 units that are connected beneath four transmission lines is the selected control object. First, the power-tracking dynamic characteristic of wind turbines is modeled as a first-order inertial model. Based on the wind farm topology, the wind turbines are grouped into four clusters to fully use the clusters’ smoothing effect. A method for frequency-domain aggregation and approximation is used to obtain the clusters’ power-tracking equivalent model. From the reported analysis, a model predictive control strategy is proposed in this paper to optimize the rapidity and stability of the power-tracking performance. In this method, the power set-point for the wind farm is dispatched to the clusters. Then, the active power control is distributed from the cluster to the wind turbines using the conventional proportional distribution strategy. Ultra-short-term wind speed prediction is also included in this paper to assess the real-time performance. The proposed strategy was tested using a simulated wind farm based on an industrial wind farm. Good power-tracking performance was achieved in several scenarios, and the results demonstrate that the performance markedly improved using the proposed strategy compared with the conventional strategy.
机译:本文提出了一种面向工业应用的风电场自动发电控制策略,以在功率限制条件下稳定风电场的功率输出。选择的控制对象是具有20个单元的风电场,它们连接在4条传输线下方。首先,将风力涡轮机的动力跟踪动态特性建模为一阶惯性模型。根据风电场拓扑,将风力涡轮机分为四个群集,以充分利用群集的平滑效果。一种用于频域聚合和逼近的方法可用于获取群集的功率跟踪等效模型。从报告的分析出发,本文提出了一种模型预测控制策略,以优化功率跟踪性能的快速性和稳定性。在这种方法中,将风电场的功率设定点分配给集群。然后,使用常规比例分配策略将有功功率控制从群集分配到风力涡轮机。本文还包括超短期风速预测,以评估实时性能。使用基于工业风电场的模拟风电场对提出的策略进行了测试。在多种情况下都实现了良好的功率跟踪性能,结果表明,与传统策略相比,使用所提出的策略可以显着提高性能。

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