English

Equivalent Inertia Provided by Droop Control of Fast Frequency Regulation Resources

Systems and Control 2022-12-02 v1 Systems and Control

Abstract

Conventional inertia control strategies (i.e., the VSG-based and PD-based strategies) for the fast frequency regulation resources (FFRs) might lead to system oscillations due to their emulations of generator dynamics. The only-droop-based inertia control strategy is a feasible idea to address this issue. This letter quantitatively investigates the equivalent inertia provided by the droop control of the FFRs. First, an equivalent-scenario-based method is proposed to evaluate the equivalent inertia provided by the droop control, which shows that the droop control with a constant droop coefficient provides time-variant equivalent inertia. Then, the time-variant-droop-based equivalent inertia control (VDIC) strategy is proposed for the FFRs, which can provide the required constant inertia support without introducing generator-like dynamics. A case study verifies the effectiveness of the VDIC strategy.

Keywords

Cite

@article{arxiv.2212.00685,
  title  = {Equivalent Inertia Provided by Droop Control of Fast Frequency Regulation Resources},
  author = {Ye Liu and Chen Shen},
  journal= {arXiv preprint arXiv:2212.00685},
  year   = {2022}
}