Decentralized Frequency-Domain Conditions for D-Stability with Application to DC Microgrids
Abstract
This paper proposes a decentralized method for regional pole placement, or -stability, in linearized networked systems. Existing LMI-based methods are hindered by confidentiality concerns regarding proprietary subsystem models and the absence of communication infrastructures. To overcome these barriers, we map the target region of pole placement to an auxiliary left-half plane and introduce positive functions to handle the resulting complex-coefficient dynamics. We prove that -stability is guaranteed via local frequency-domain criteria without requiring shared subsystem models or inter-subsystem communication. This method is then tailored to DC microgrids, where a loop transformation is utilized to reallocate the burden of stability certification, deriving a broadcastable grid code for decentralized parameter synthesis. Numerical examples verify the efficacy of the proposed method.
Cite
@article{arxiv.2605.13529,
title = {Decentralized Frequency-Domain Conditions for D-Stability with Application to DC Microgrids},
author = {Zelin Sun and Shanshan Jiang and Xiaoyu Peng and Xiang Zhu and Xiuqiang He and Hua Geng},
journal= {arXiv preprint arXiv:2605.13529},
year = {2026}
}