特高压直流无功自动控制的机电暂态建模

Yuan Huling, P. Huimin, Li Feng, Li Wei, Huang Tiangang
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引用次数: 0

摘要

由于电力系统安全分析中缺乏对特高压直流无功控制的建模,在线安全预警和离线安全分析的结果对直流近区交流和直流故障时的电压和输出功率不准确。基于直流控制系统的无功控制逻辑,提出了适用于电力系统暂态安全分析的特高压直流无功控制仿真方法,并统一考虑无功控制和过电压控制进行无功补偿。在暂态仿真过程中实现了直流功率控制的自动仿真,仿真无功控制的作用条件、延时和作用对象。有效提高了在线预警评估的准确性。同时,通过实际电网的算例验证了所提方法的正确性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromechanical Transient Modeling of UHVDC Reactive Power Auto-Control
In view of the lack of modeling for UHVDC reactive power control in power system security analysis, the results of online security early warning and off-line analysis were not accurate for the voltage and output power at the DC near-zone AC and DC faults. Based on the reactive power control logic in DC control system, this paper proposed the UHVDC reactive power control simulation method which was suitable for power system transient security analysis, and unified consideration the reactive power control and over-voltage control for reactive power compensation. It was realized that the automatic simulation of DC power control during the transient simulation process to simulate the action condition, delay and the action object of reactive power control. It effectively improved the accuracy of the online early warning assessment. At the same time, the results of a real power grid showed the correctness and effectiveness of the proposed methods.
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