Stability analysis of small signals under different ratios of grid-following to grid-forming converters sent via flexible DC delivery Feng Li1, Zhijie Li2,*, Shuangmian Yang1, Jinyu Wang2 and Yibo Zhang1 1TBEA Science & Technology Investment Co., Ltd., Tianjin, 301700, China 2College of Electrical Engineering, Xi'an Jiaotong University, Xian, Shanxi, 712000, China
Abstract: Under the "dual carbon" strategy, frequent wide-band grid oscillations caused by
grid-following converters as the interface for renewable energy integration have become
common. Existing studies suggest that the addition of grid-forming converters can address this
issue, but few explain the reasons from a stability mechanism perspective. Additionally, most
studies overlook the interaction between converters and sending-end converter stations. This
paper first conducts sequential impedance modeling. Then, based on impedance network
analysis, it examines the impact of sending-end converter stations on stability assessment.
Finally, by adjusting the grid-following/grid-forming ratio, Nyquist curves under different
ratios are generated to analyze the mechanism by which grid-forming converters enhance gridfollowing
small-signal stability. Corresponding simulation models are also developed for
validation.





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