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A Commutation Failure Suppression Control Method Based on the Controllable Operation Region of Hybrid Dual-Infeed HVDC System

机译:一种基于混合双输送HVDC系统可控操作区域的换向抑制控制方法

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摘要

With the increased use of high voltage direct current (HVDC) systems, line commutated converters (LCC-HVDC) and voltage source converters (VSC-HVDC) tend to feed into AC systems over short electrical distances. The flexible power control of VSC-HVDC systems provides an effective approach to suppress the commutation failure of LCC-HVDC systems. A suppression method, based on a controllable operation region, is proposed in this study to reduce the probability of commutation failure in a hybrid dual-infeed HVDC system. First, the quantitative transient reactive power control requirement of VSC-HVDC inverter that could fulfill the suppression control boundary condition of commutation failure was analyzed. Given the maximum current constraint of the VSC-HVDC inverter and the primary frequency modulation constraint of the sending-end grid, a controllable operation region of the hybrid dual-infeed HVDC system was proposed. Furthermore, a commutation failure suppression control method, based on the controllable operation region, was proposed to mitigate continuous commutation failure. Finally, the validity and accuracy of the proposed method was verified by the simulation of PSCAD/EMTDC. The proposed control method can realize reasonable use of the reactive power control capability of the VSC-HVDC system, which effectively improves immunity to commutation failure of the LCC-HVDC system under grid fault.
机译:随着高压直流(HVDC)系统的使用增加,线路换向转换器(LCC-HVDC)和电压源转换器(VSC-HVDC)倾向于在短电距离上进入AC系统。 VSC-HVDC系统的灵活功率控制提供了一种有效的方法来抑制LCC-HVDC系统的换向故障。在该研究中提出了一种基于可控操作区域的抑制方法,以降低混合双传输HVDC系统中的换向故障的概率。首先,分析了可以满足抑制失败的抑制控制边界条件的VSC-HVDC逆变器的定量瞬态无功功率控制要求。鉴于VSC-HVDC逆变器的最大电流约束和发送端网格的初级频率调制约束,提出了一种混合双馈HVDC系统的可控操作区域。此外,提出了一种基于可控操作区域的换向故障抑制控制方法来减轻连续换向故障。最后,通过模拟PSCAD / EMTDC来验证所提出的方法的有效性和准确性。所提出的控制方法可以实现VSC-HVDC系统的无功功率控制能力的合理利用,这有效地提高了电网故障下LCC-HVDC系统的换向失效。

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