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A Static Voltage Security Region for Centralized Wind Power Integration—Part I: Concept and Method

机译:集中式风电集成的静态电压安全区域—第一部分:概念和方法

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When large wind farms are centrally integrated in a power grid, cascading tripping faults induced by voltage issues are becoming a great challenge. This paper therefore proposes a concept of static voltage security region to guarantee that the voltage will remain within operation limits under both base conditions and N-1 contingencies. For large wind farms, significant computational effort is required to calculate the exact boundary of the proposed security region. To reduce this computational burden and facilitate the overall analysis, the characteristics of the security region are first analyzed, and its boundary components are shown to be strictly convex. Approximate security regions are then proposed, which are formed by a set of linear cutting planes based on special operating points known as near points and inner points. The security region encompassed by cutting planes is a good approximation to the actual security region. The proposed procedures are demonstrated on a modified nine-bus system with two wind farms. The simulation confirmed that the cutting plane technique can provide a very good approximation to the actual security region.
机译:当大型风电场集中集成在电网中时,由电压问题引起的级联跳闸故障正成为一个巨大的挑战。因此,本文提出了一个静态电压安全区域的概念,以确保在基本条件和N-1突发情况下,电压都将保持在工作限制之内。对于大型风电场,需要大量的计算工作才能计算出建议的安全区域的确切边界。为了减轻这种计算负担并促进整体分析,首先分析安全区域的特征,并显示其边界分量严格凸出。然后提出了近似的安全区域,该区域由一组基于特殊操作点(称为近点和内部点)的线性切割平面形成。切割平面所包围的安全区域非常接近实际的安全区域。在带有两个风电场的改进型九总线系统上演示了拟议的程序。仿真证实,切割平面技术可以提供非常接近实际安全区域的近似值。

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