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Grid-connection Time Forecast of Synchronous Condensers

机译:同步冷凝器的网格连接时间预测

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With the rapid development of UHVDC power transmission, synchronous condensers with dynamic reactive power compensation capability begin to be applied on a large scale. In view of the grid-connection problem of synchronous condensers, based on the improvement of traditional phase-angle difference time function, this paper analyses the influence of change of acceleration on the synchronous point prediction of synchronous condensers in the process of inert deceleration grid-connection. Through theory and numerical example, the number of synchronous points in the maximum allowable slip range and the allowable closing time range of synchronous condensers are analysed during the grid-connection process, and the correctness of the analysis results is verified on the MATLAB/Simulink simulation software. The research in this paper provides great convenience for predicting the time of the closing pulse and further improves the grid-connection success rate of synchronous condensers.
机译:随着UHVDC动力传动的快速发展,具有动态无功补偿能力的同步冷凝器开始施加大规模。 鉴于同步冷凝器的网格连接问题,基于传统相位角差时间函数的改进,本文分析了加速变化对惰性减速网格过程中同步冷凝器同步点预测的影响 - 联系。 通过理论和数值示例,在网格连接过程中分析了最大允许滑移范围和同步电容器的允许关闭时间范围的同步点的数量,并在MATLAB / Simulink仿真上验证了分析结果的正确性 软件。 本文的研究为预测关闭脉冲的时间提供了极大的便利,并进一步提高了同步冷凝器的网格连接成功率。

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