English

Decentralized Frequency-Domain Conditions for D-Stability with Application to DC Microgrids

Systems and Control 2026-05-14 v1 Systems and Control

Abstract

This paper proposes a decentralized method for regional pole placement, or D\mathcal{D}-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 D\mathcal{D} of pole placement to an auxiliary left-half plane and introduce positive functions to handle the resulting complex-coefficient dynamics. We prove that D\mathcal{D}-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.

Keywords

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}
}
R2 v1 2026-07-22T07:10:09.531Z