Jiaxin Wang, Ning Zhang
Inverter-based resources (IBRs) are increasingly dominating modern power systems, posing significant challenges to cost-effectively maintain system strength for stability. At the same time, the operating behaviors of IBRs are software-defined, including both their steady-state power outputs and control modes, e.g. grid-forming (GFM) and grid-following (GFL). Such flexibility has not been fully explored to efficiently operate future power systems. This paper develops a novel framework that simultaneously optimizes IBR operating behaviors and ensures adequate system strength. A comprehensive solution is provided to integrate system strength constraints into scheduling models, despite their inherent strong non-convexities. We derive a rigorous linear-matrix-inequality (LMI) reformulation of the system strength constraint, effectively addressing non-explicit formulations and dimension variation issues caused by GFM/GFL mode switching of IBRs. Then, we equivalently convert the original non-convex implicit system strength-constrained scheduling problem into an explicit mixed-integer semi-definite programming (MISDP) problem by incorporating the reformulated system strength constraint along with other operational constraints. We further provide a Rayleigh Cut method, which is compatible with standard mixed-integer linear programming (MILP) solvers, to solve this system strength-constrained scheduling problem. Case studies on a modified IEEE 118-bus system and a practical Jiangsu power system demonstrate the performance of the proposed methods.
@article{c9310461-a020-4235-87b3-d727bc9d2e92,
title={System Strength-Constrained Scheduling with Switchable Grid-Forming and Grid-Following Generation Resources},
author={Jiaxin Wang and Ning Zhang},
year={2025},
language={en}
}TY - JOUR TI - System Strength-Constrained Scheduling with Switchable Grid-Forming and Grid-Following Generation Resources AU - Jiaxin Wang AU - Ning Zhang PY - 2025 LA - en ER -
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