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LCC-HVDC auxiliary emergency power coordinated control strategy considering the effect of electrical connection of the sending-end power grid

机译:LCC-HVDC辅助应急功率协调控制策略考虑发送端电网电气连接的效果

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HVDC auxiliary emergency power control can improve the transient stability of AC/DC power system. Compared with other control methods, HVDC auxiliary emergency power control has the advantages of quick response, large adjustment capacity and less investment, so it is the primary choice to improve the transient stability. Taking multi-infeed DC (MIDC) transmission system as the research object, based on the definition of the traditional power support factor, considering the influence of the electrical connection of the sending-end power grid on the power support, a new power support factor (NPSF) is defined. Based on the NPSF, multiple DC coordination sharing strategies are implemented when one of the DC faults occurs. Finally, MIDC is built on the PSCAD. Single DC auxiliary power control and multiple DC auxiliary power coordinated control were simulated, respectively. Rationality of the definition of NPSF is verified, and it is concluded that multiple DC joint power control is superior to single DC.
机译:HVDC辅助应急功率控制可以提高AC / DC电力系统的瞬态稳定性。与其他控制方法相比,HVDC辅助应急电源控制具有快速响应,调整能力大,投资较少的优点,因此是提高瞬态稳定性的主要选择。根据传统电力支持因子的定义,采用多送达的DC(MIDC)传输系统作为研究对象,考虑到发送端电网电气连接对电源支持的影响,新的电源支持因子(NPSF)定义。基于NPSF,在发生一个DC故障时,实现了多种DC协调共享策略。最后,MIDC建立在PSCAD上。分别模拟了单一DC辅助功率控制和多种直流辅助功率协调控制。验证了NPSF定义的合理性,得出结论,多个直流接头功率控制优于单一DC。

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