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An efficient method of simulating stiffly connected power systems with stator and network transients included

机译:包含定子和网络暂态的仿真刚性连接电力系统的有效方法

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A method is presented for simulating interconnected power systems with the stator and network transients included. This method is well suited for stiffly connected power systems in which tie-lines interconnecting the system components are electrically short (i.e. the tie-line charging capacitance can be neglected). The respective state-space models of the network and of the electric machines, combined with the algebraic constraint equations imposed by their interconnection, comprise a set of differential-algebraic equations which describes the composite system dynamics. A systematic procedure has been developed in which these differential-algebraic equations are used to establish a conventional state-space model of the composite system. Simulations of an example system have shown that the computation time associated with this method is comparable to that established using reduced-order models in which the stator transients are neglected.
机译:提出了一种用于仿真包含定子和网络暂态的互连电力系统的方法。该方法非常适合于刚性连接的电力系统,在该系统中,互连系统组件的联络线电气短路(即可以忽略联络线充电电容)。网络和电机的各个状态空间模型,再加上由它们的互连所施加的代数约束方程,包括一组描述复合系统动力学的微分代数方程。已经开发出系统的程序,其中这些微分-代数方程用于建立复合系统的常规状态空间模型。对示例系统的仿真表明,与该方法相关的计算时间与使用降阶模型建立的计算时间相当,在降阶模型中忽略了定子瞬变。

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