A Dynamic Phasor Framework for Analysis of Grid-Forming Converter Connected to Series-Compensated Line

Fuente: arXiv
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Main Authors: Hossain, Fiaz, Chaudhuri, Nilanjan Ray
Format: Preprint
Published: 2025
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author Hossain, Fiaz
Chaudhuri, Nilanjan Ray
author_facet Hossain, Fiaz
Chaudhuri, Nilanjan Ray
contents A dynamic phasor (DP) framework for time-domain and frequency-domain analyses of grid-forming converters (GFCs) connected to series-compensated transmission lines is proposed. The proposed framework can capture the behavior of GFCs subjected to unbalanced short circuit faults in presence of different current limiting strategies. Moreover, the linearizability and time invariance of this framework allows us to perform eigen decomposition, which is a powerful tool for root-cause analysis and control design. We show that a certain degree of series compensation may result in poorly-damped oscillations in presence of the grid-forming converter. A participation factor analysis using the DP model reveals that the point of interconnection voltage angle is dominant in this mode. Eigenvalue sensitivity analysis of controller parameters shows that reducing the power-frequency droop coefficient is most effective in stabilizing the poorly-damped mode. Detailed validation with electromagnetic transient model demonstrates the accuracy of the proposed framework.
format Preprint
id arxiv_https___arxiv_org_abs_2505_17414
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Dynamic Phasor Framework for Analysis of Grid-Forming Converter Connected to Series-Compensated Line
Hossain, Fiaz
Chaudhuri, Nilanjan Ray
Systems and Control
A dynamic phasor (DP) framework for time-domain and frequency-domain analyses of grid-forming converters (GFCs) connected to series-compensated transmission lines is proposed. The proposed framework can capture the behavior of GFCs subjected to unbalanced short circuit faults in presence of different current limiting strategies. Moreover, the linearizability and time invariance of this framework allows us to perform eigen decomposition, which is a powerful tool for root-cause analysis and control design. We show that a certain degree of series compensation may result in poorly-damped oscillations in presence of the grid-forming converter. A participation factor analysis using the DP model reveals that the point of interconnection voltage angle is dominant in this mode. Eigenvalue sensitivity analysis of controller parameters shows that reducing the power-frequency droop coefficient is most effective in stabilizing the poorly-damped mode. Detailed validation with electromagnetic transient model demonstrates the accuracy of the proposed framework.
title A Dynamic Phasor Framework for Analysis of Grid-Forming Converter Connected to Series-Compensated Line
topic Systems and Control
url https://arxiv.org/abs/2505.17414