MMC-HVDC并网系统小信号稳定性分析及零序循环电流控制器的优化控制

Yinmiao Luo, Jun Yao, Sen Huang, Kai Liu
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引用次数: 0

摘要

基于模块化多电平变换器(MMC)的高压直流(HVDC)输电技术在海上并网风电项目中得到了广泛应用,并网系统的小信号稳定性问题备受关注。研究了零序环流控制器对海上风电MMC-HVDC并网系统稳定性的影响。首先利用复向量和谐波状态空间建立了闭环频域模型;在此基础上,建立了考虑ZSCC控制器的MMC单输入单输出阻抗模型。此外,建立了海上风电场和配电网的阻抗模型。基于阻抗模型,探讨了ZSCC控制器对海上风电MMC-HVDC并网系统稳定性的影响规律和机理。分析结果表明,当风输出功率过大时,系统容易产生振荡。ZSCC控制器的应用等效地增加了桥臂电阻,增强了系统阻尼,有效地抑制了孤岛控制模式下MMC阻抗的谐振峰。最后,从增强系统阻尼的角度出发,设计了ZSCC控制器的参数优化方案,并通过仿真验证了理论的正确性和方案的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small Signal Stability Analysis of MMC-HVDC Grid-connected System and Optimization Control of Zero-sequence Circulating Current Controller
The high voltage direct current (HVDC) transmission technology based on modular multilevel converter (MMC) is widely used in the offshore grid-connected wind power generation projects, and the small signal stability problems of the grid-connected system have been attracted great attention. This paper focused on the influence of the zero-sequence circulating current (ZSCC) controller on the stability of the offshore wind power generation MMC-HVDC grid-connected system. The closed-loop frequency domain model was derived by means of complex vectors and harmonic state space firstly. Then the paper developed the single-input-single-output (SISO) impedance model of MMC which considering the ZSCC controller. In addition, the impedance model of the offshore wind farm and the distribution network were established. Based on the impedance model, the influence law and mechanism of the ZSCC controller on the stability of the offshore wind power generation MMC-HVDC grid-connected system were explored. The analysis results show that when the output power of wind is too large, the system is prone to oscillation. The application of the ZSCC controller equivalently increases the bridge arm resistance and enhancing the system damping, which effectively suppressing the resonant peaks of MMC impedance in island control mode. Finally, from the point of view of enhancing the damping of the system, the parameter optimization scheme for ZSCC controller was designed, and the correctness of the theory and the feasibility of the scheme were verified by simulations.
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