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Dynamic VAR Configuration of Receiving-end Power Grid Based on Improved Trajectory Sensitivity Index

机译:基于改进的轨迹灵敏度指标的接收端电网动态无功配置

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Transient voltage stability of DC receiving-end power grid is becoming more and more serious due to AC faults near inverters. One of the solutions is to configure the dynamic VAR compensation devices to provide dynamic VAR support for DC inverters. However, the influence of voltage sags is seldom considered in the existing compensation schemes. Based on this, this paper presents a synthesized configuration scheme for dynamic VAR for DC receiving-end grid. Firstly, the candidate buses for VAR compensation are determined by a static analysis method. Then, the improved sensitivity index of voltage and reactive power is proposed based on the transient voltage stability index with different weights for different voltage trajectory, which could consider the influence of different voltage sags. Then, based on these two indicators, a configuration method of dynamic VAR for DC receiving-end grid is proposed. Finally, the adaptability of the scheme is verified with a practical large scale multi-DC receiving end power grid, and the advantages and disadvantages of the scheme are discussed.
机译:由于逆变器附近出现交流故障,直流接收端电网的瞬态电压稳定性变得越来越严重。解决方案之一是配置动态VAR补偿设备,以为DC逆变器提供动态VAR支持。但是,在现有的补偿方案中很少考虑电压骤降的影响。基于此,本文提出了一种用于直流接收端电网的动态无功综合配置方案。首先,通过静态分析方法确定用于无功补偿的候选总线。然后,针对不同的电压轨迹,基于权重不同的暂态电压稳定度指标,提出了改进的电压和无功灵敏度指标,可以考虑不同电压暂降的影响。然后,基于这两个指标,提出了一种用于直流接收端电网的动态无功功率的配置方法。最后,通过实际的大规模多直流接收端电网验证了该方案的适应性,并讨论了该方案的优缺点。

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