arXiv · 2609.27223
Reshaping Converter-Network Interactions in Microgrids: From Virtual Impedance to Virtual Two-Port Control
Abstract
Converter terminal characteristics are central to both dynamic interactions with the network and steady-state power sharing in inverter-based microgrids. Conventional additive virtual impedance (VI) shapes these characteristics through a single virtual branch. This paper proposes virtual two-port control, which uses four coordinated transfer channels to reconstruct the terminal impedance. The connected network consequently observes the original converter through a virtually inserted twoport interface, with conventional virtual impedance recovered as a degenerate case. The proposed control transforms the original impedance through a matrix linear-fractional map. We also derive a necessary and sufficient condition for the reconstruction to be stable and proper. Among its various potential applications in microgrids, we develop three representative ones in detail: passivation with reduced control effort, uncertainty compression, and seriesshunt power-flow regulation. Simulations of VSG-controlled converters demonstrate the advantages of the proposed method over conventional VI in these applications.
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Liaoyuan Yang, Peng Yang, Yang Wu, Feng Liu. 2026-09-23. Reshaping Converter-Network Interactions in Microgrids: From Virtual Impedance to Virtual Two-Port Control. https://arxiv.org/abs/2609.27223
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