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Study on Emergency Control of Reactive Power after HVDC Blocking Fault with Large-scale Renewable Energy

机译:大规模可再生能源HVDC阻挡故障后功率应急控制研究

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It may cause steady-state voltage problem after the HVDC blocking failure and cutting off large number of supporting photovoltaic power supply, which will exceed the voltage limit and seriously threatens the safety of power grid equipment. Firstly, aiming at the lack of reactive power emergency control after HVDC blocking fault, the reactive power emergency control method based on fault event and voltage response was proposed in this paper. Which provides a guaranteed approach to solve the system steady-state overvoltage problem after the accident. Secondly, the priority of reactive power control sites and the quantity of control measures were determined based on sensitivity technology. And the action logic and overall architecture of the control system was designed. Finally, the proposed control method and strategy were verified by the simulation results of the northwest China power grid. The research conclusions can provide theoretical references for the design of the scheme and control strategies for the renewable energy integrated HVDC delivery system.
机译:在HVDC阻挡故障和切断大量支撑光伏电源之后,可能会导致稳态电压问题,这将超过电压限制并严重威胁到电网设备的安全性。首先,针对HVDC阻挡故障后缺乏无功功率应急控制,本文提出了基于故障事件和电压响应的无功动力应急控制方法。这提供了在事故发生后解决系统稳态过电压问题的保证方法。其次,基于灵敏度技术确定无功功率控制位点的优先级和控制措施的量。设计了控制系统的动作逻辑和整体架构。最后,通过西北地区电网的仿真结果验证了所提出的控制方法和策略。研究结论可以为可再生能源集成HVDC输送系统提供方案和控制策略的设计提供理论参考。

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