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Secondary voltage control areas through energy levels

机译:通过能级的二次电压控制区域

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摘要

Novel strategies for identifying voltage control areas in large power systems are proposed. These are founded on the modal energy levels and the instantaneous energy of oscillatory modes for determining voltage control areas of large power systems. The modal energy levels are used for identifying the minimum number of areas into the grid, and the minimum number of control buses per area in order to make a suitable secondary voltage control into the system. The energy levels are conceived regarding the topology of the grid and the dynamic analysis. Then, the instantaneous energy is provided by the Taylor-Fourier transform (TFT), which is taken into account for determining a set of sensible buses during the transient behavior. Both strategies are applied in the New England power system corroborating the applicability and the validity of the proposition.
机译:提出了识别大型电力系统中电压控制区域的新策略。这些是基于模态能级和振荡模式的瞬时能量来确定大型电力系统的电压控制区域的。模态能级用于识别进入电网的最小区域数量,以及每个区域的最小控制总线数量,以便对系统进行合适的二次电压控制。能量水平是关于电网拓扑和动态分析而构想的。然后,通过泰勒-傅立叶变换(TFT)提供瞬时能量,在确定瞬态行为过程中确定一组感测总线时要考虑该瞬时能量。这两种策略都在新英格兰电力系统中得到应用,从而证实了该命题的适用性和有效性。

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