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Study on the Dynamic Identification Method for Key Branch of AC Weak Section and Transient Stability Control Scheme

机译:交流电薄弱环节关键分支动态识别方法及暂态稳定控制方案研究

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AC section of oscillation center placed, which is suffered by the large disturbance fault, is the weak link at which the interconnected AC system would be lost synchronization stability and slatted. The key branch is the first branch that lead weak section “tearing”. It is of great significance to identify key branch and to take targeted control measures to improve the transmission capability and immunity of interconnected power grid. Aiming at AC/DC hybrid transmission system, based on the disturbed trajectory difference analysis during the process that stabilization levels continue to deteriorate, the dynamic identification method for the key branch is put forward, and successive instability mechanism of the multi-branch system is revealed. The control measures and the active control sensitivity evaluation indexes of the key branch are proposed. The control strategy for improving stability is proposed based on the sensitivity indictor. The simulation results of actual power network show that the dynamic identification method and the stability control strategy are effective.
机译:摆放的振荡中心的交流部分受到大的扰动故障,是互连的交流系统失去同步稳定性并产生板条的薄弱环节。关键分支是导致弱部“撕裂”的第一个分支。识别关键分支并采取有针对性的控制措施,对提高互联电网的传输能力和抗扰性具有重要意义。针对交直流混合输电系统,基于稳定水平持续恶化过程中的轨迹轨迹差异分析,提出了关键分支的动态辨识方法,揭示了多分支系统的连续失稳机理。 。提出了关键分支的控制措施和主动控制灵敏度评价指标。基于灵敏度指标提出了提高稳定性的控制策略。实际电网仿真结果表明,动态辨识方法和稳定控制策略是有效的。

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