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An intelligent wind farm model for three-phase unbalanced power flow studies

机译:三相不平衡功率流程的智能风电场模型

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With the rapid growth of wind power penetration in power systems, researchers focus on methods to accurately model wind generators in power flow studies. There are several accurate wind generator models which capture the voltage dependence of power output per each phase of wind generators. These models have been built using individual models of all the constituent components of wind generators. Furthermore, these models comprise complex nonlinear equations and hence inevitably slow down power flow studies. When wind farms are modeled with this approach, they become very complex and cumbersome to be integrated into power flow studies. On the other hand if the power output of a wind farms is simplistically assumed as fixed injection value neglecting the voltage dependence of power output per phase, the resultant power flow solution will not be accurate due to over simplification. In this paper a new wind farm model is built using Artificial Neural Networks (ANN). The procedure of building ANN models is explained using a small wind farm with five wind generators. The ANN wind farm models estimate power output per phase using three-phase voltages and wind speeds. A power flow study with this ANN model, a simple fixed power model and a detailed nonlinear model is reported in this paper with sufficient comparisons. The proposed ANN model is 80 times faster than a complete nonlinear wind farm model and as accurate as the nonlinear wind farm model.
机译:随着动力系统风力渗透的快速增长,研究人员专注于准确地模拟动力流程研究中的风力发电机的方法。有几种精确的风力发电机型号,可捕获每个阶段的风力发电机功率输出的电压依赖性。这些模型已经使用风力发电机的所有组成部件的各个模型构建。此外,这些模型包括复杂的非线性方程,因此不可避免地减慢功率流程研究。当风电场采用这种方法建模时,它们变得非常复杂,繁琐地集成到电力流程研究中。另一方面,如果风电场的功率输出是简单地假定的,因为忽略了每相电源输出的电压依赖性的固定注入值,因此由于过度简化而导致的功率流溶液不会准确。本文使用人工神经网络(ANN)建立了新的风电场模型。建立ANN模型的程序,使用一个带有五个风力发电机的小型风电场来解释。 ANN风电场模型使用三相电压和风速度每相估计功率输出。本文报道了具有该ANN模型的功率流程研究,简单的固定功率模型和详细的非线性模型,具有足够的比较。所提出的ANN模型比完整的非线性风电场模型快80倍,并且作为非线性风电场模型准确。

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