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Real-Time Simulation of Grid-Connected Wind Farms Using Physical Aggregation

机译:基于物理聚合的并网风电场实时仿真

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摘要

The electromagnetic transient (EMT) simulation of a power system interconnected with wind farms involves such intensive computations that fully digital real-time simulators are among the effective tools for performing such simulations. To practically exploit real-time simulators for the simulation of wind farms with numerous wind turbines, the application of aggregation techniques is inevitable. In this paper, a detailed EMT model of a grid-connected wind farm with ten doubly-fed-induction-generator-based General Electric 1.5-MW wind turbines has been implemented on an advanced PC-Cluster-based real-time simulator. Three levels of physical aggregation methods are presented to reduce the computational efforts of the real-time simulation while maintaining adequate accuracy. A combination of these aggregation methods with parallel processing allowed the real-time simulation to be carried out with a fixed time step of $50 {rm mu}hbox{s}$ and high accuracy. Various fault transient results are provided for all the aggregation levels and compared against results from the detailed wind farm model. The validity of the proposed methods and real-time simulation results has also been confirmed by comparing with offline simulation results in MATLAB/SIMULINK.
机译:与风电场互连的电力系统的电磁暂态(EMT)仿真涉及大量的计算,因此全数字实时仿真器是执行此类仿真的有效工具之一。为了实际地利用实时模拟器来模拟具有众多风力涡轮机的风电场,聚合技术的应用是不可避免的。在本文中,已在先进的基于PC群集的实时仿真器上实现了具有十台基于双馈感应发电机的通用电气1.5兆瓦风力发电机的并网风电场的详细EMT模型。提出了三种级别的物理聚合方法,以减少实时仿真的计算量,同时保持足够的精度。这些聚合方法与并行处理的结合允许以50美元的固定时间步长和高精度执行实时仿真。为所有聚合级别提供了各种故障暂态结果,并与详细的风电场模型的结果进行了比较。通过与MATLAB / SIMULINK中的离线仿真结果进行比较,也证实了所提方法和实时仿真结果的有效性。

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