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Matrix Method to Linearization and State Space Representation of Power Systems Containing Doubly Fed Induction Machines Operating as Wind Generators

机译:矩阵方法是含双馈电机的电力系统的线性化和状态空间表示,其作为风发电机

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The control design using modern control theory requires the representation of the system in state space. In electric power systems, besides the control design, the state space representation makes possible the prediction about the system transient stability through the model matrices analysis. However, power systems dynamic models consist of differential and algebraic nonlinear equations and, for large power systems, these models are too complex making difficult the controllers design and the stability analysis. The model linearization allows the application of the linear control theory in a linearized model, and the transient stability analysis through the model state matrix eigen values positioning evaluation. Some works have showed linearization and state space representation methods for power systems containing synchronous machines. This work presents methods for power systems containing doubly fed induction generators, which have an increasing penetration in power systems, mainly in Europe, operating as wind generators.
机译:使用现代控制理论的控制设计要求系统空间中系统的表示。在电力系统中,除了控制设计之外,状态空间表示可以通过模型矩阵分析对系统瞬态稳定性进行预测。然而,电力系统动态型号由差分和代数非线性方程组成,对于大型电力系统,这些型号太复杂,使控制器的设计和稳定性分析难以实现。模型线性化允许在线性化模型中应用线性控制理论,以及通过模型矩阵eIgen值定位评估的瞬态稳定性分析。有些作品显示了包含同步机的电力系统的线性化和状态空间表示方法。这项工作提供了含有双馈感应发电机的电力系统的方法,该发电机具有越来越多的电力系统渗透,主要在欧洲,作为风力发电机运行。

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