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A reduced-order method for estimating the stability region of power systems with saturated controls

机译:用饱和控制估计电力系统稳定区域的降阶方法

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In a modern power system, there is often large difference in the decay speeds of transients. This could lead to numerical problems such as heavy simulation burden and singularity when the traditional methods are used to estimate the stability region of such a dynamic system with saturation nonlinearities. To overcome these problems, a reduced-order method, based on the singular perturbation theory, is suggested to estimate the stability region of a singular system with saturation nonlinearities. In the reduced-order method, a low-order linear dynamic system with saturation nonlinearities is constructed to estimate the stability region of the primary high-order system so that the singularity is eliminated and the estimation process is simplified. In addition, the analytical foundation of the reduction method is proven and the method is validated using a test power system with 3 buses and 5 machines.
机译:在现代电力系统中,瞬变的衰减速度通常存在很大差异。当使用传统方法来估计具有饱和非线性的动态系统的稳定区域时,这可能导致数值问题,例如沉重的仿真负担和奇异性。为了克服这些问题,提出了一种基于奇异摄动理论的降阶方法来估计具有饱和非线性的奇异系统的稳定区域。在降阶方法中,构造具有饱和非线性的低阶线性动力系统来估计一次高阶系统的稳定性区域,从而消除了奇点并简化了估计过程。此外,还证明了减少方法的分析基础,并使用具有3台总线和5台机器的测试电源系统对该方法进行了验证。

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