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Study on a coordinate control strategy of multi-HVDC links to improve transient stability in China Southern Power Grid

机译:南方电网多高压直流输电协调控制策略研究

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Since High Voltage Direct Current (HVDC) has overload-ability and quickly adjustable features, by rapidly modulating HVDC power in an AC/DC grid, HVDC can compensate power imbalance between sending-grid and receiving-grid and enhance transient stability after a heavy disturbance. In previous studies, the feasibility and effectiveness of an automatic real-time control strategy of HVDC in a single HVDC link system have been discussed. This paper focuses on the application of this control strategy in a multi-HVDC links system and the mutual influence between different HVDC links. Simulations in a transient simulation model of China Southern Power Grid (CSG) by the EMTDC/PSCAD software show that the coordinated control of multi-HVDC links contributes a significant improvement of the system transient stability after a large disturbance. When all of the four HVDC lines in CSG involve in the coordinated control, the stability of the system will be most obviously improved after a large disturbance. Meanwhile the mutual influence between the HVDC links is very limited.
机译:由于高压直流(HVDC)具有过载能力和快速可调的功能,因此通过在AC / DC电网中快速调节HVDC电源,HVDC可以补偿发送电网和接收电网之间的功率不平衡,并增强严重干扰后的暂态稳定性。在以前的研究中,已经讨论了在单个HVDC链接系统中进行HVDC自动实时控制策略的可行性和有效性。本文重点研究了这种控制策略在多高压直流输电系统中的应用以及不同高压直流输电系统之间的相互影响。通过EMTDC / PSCAD软件在南方电网(CSG)暂态仿真模型中进行的仿真表明,多HVDC链路的协调控制可显着改善大扰动后系统的暂态稳定性。当CSG中的所有4条高压直流输电线路都参与协调控制时,在出现大的扰动后,系统的稳定性将得到最明显的改善。同时,HVDC链路之间的相互影响非常有限。

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