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A method of evaluating the transfer capacity for power system considering of the power injection and the power grid topology

机译:考虑电网和电网拓扑的电力系统转移能力评估传输能力的方法

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The transfer capacity is a varying value for a certain power system, which may be changed with the evolution of the system. Although the topology of a power system is usually designed in an optimizing way to maximize the transfer capability, the capability itself will be inevitably weaken because of a time lag between the increasing load and the enhancement of grid topology. Due to the lack of qualification tools to deal with the varying transfer capability, related topics are seldom to be discussed. This paper proposes a new method to evaluate the transfer capacity, in which the mechanism describing the mismatch can be boiled down to a new index named Spatial Characteristic Length Ratio (SCLR) considering of both the power injection and the power grid topology. By calculating the index SCLR, the transfer capability as well as the factors affecting it can be analyzed, which has an important meaning for power grid planning personnel. The method is used to analyze the transfer capacity of IEEE 4-node system, IEEE 9-node system and IEEE 162-node system, each under different modes of operation. Calculation results has proved the validity of this concept, and the related method is effective.
机译:传送容量是某个电力系统的变化值,其可以随系统的演变而改变。尽管电力系统的拓扑通常以优化的方式设计以最大化传输能力,但由于增加负载和电网拓扑的增强之间的时间延迟,该能力本身将不可避免地削弱。由于缺乏处理不同转移能力的资格工具,有关的相关主题很少讨论。本文提出了一种评估转移能力的新方法,其中描述了不匹配的机制可以逐步逐步逐步考虑所针对空间特征长度比(SCLR)的新索引和电网拓扑。通过计算索引SCLR,可以分析转移能力以及影响它的因素,对电网规划人员具有重要意义。该方法用于分析IEEE 4节点系统,IEEE 9节点系统和IEEE 162节点系统的传输容量,每个方法在不同的操作模式下。计算结果证明了这一概念的有效性,相关方法是有效的。

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