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Sequence Impedance Modeling and Frequency Characteristic Analysis of MMC-based HVDC

机译:基于MMC的HVDC序列阻抗建模与频率特性分析

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摘要

Modular multilevel converter (MMC)has emerged as a preferred technology for high-voltage dc (HVDC)transmission, while many HVDC-MMC projects have been reported resonance problems. The existing researches show that stability of a HVDC-grid system is decided by both the sequence impedance characteristic of HVDC-MMC and power grid, and due to coupling effect, the power grid impedance will also impact the HVDC-MMC impedance characteristic. Multi-harmonic linearization method will be adopted in this paper to develop a HVDC-MMC analytical sequence impedance model. Then the developed model is used to illustrate the effect of the power control loop as well as the bandwidth of other controllers on HVDC-MMC impedance characteristic. Finally, based on the sequence impedance model considering coupling effect, the influence of HVDC-MMC bandwidth on the system stability will be analyzed as well.
机译:模块化多电平转换器(MMC)已成为高压DC(HVDC)传输的优选技术,而许多HVDC-MMC项目已被报告共鸣问题。现有研究表明,HVDC-Grid系统的稳定性由HVDC-MMC和电网的序列阻抗特性决定,由于耦合效果,电网阻抗也会影响HVDC-MMC阻抗特性。本文将采用多谐线线性化方法,以开发HVDC-MMC分析序列阻抗模型。然后,开发的模型用于说明功率控制回路的效果以及HVDC-MMC阻抗特性上的其他控制器的带宽。最后,基于考虑耦合效果的序列阻抗模型,也将分析HVDC-MMC带宽对系统稳定性的影响。

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