Modal Analysis of Power System with High CIG Penetration Based on Impedance Models

Fuente: arXiv
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Auteurs principaux: Zheng, Le, Zheng, Jiajie, Lin, Jiajian, Liu, Chongru
Format: Preprint
Publié: 2024
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author Zheng, Le
Zheng, Jiajie
Lin, Jiajian
Liu, Chongru
author_facet Zheng, Le
Zheng, Jiajie
Lin, Jiajian
Liu, Chongru
contents This paper explores the modal analysis of power systems with high Converter-Interfaced Generation (CIG) penetration utilizing an impedance-based modeling approach. Traditional modal analysis based on the state-space model (MASS) requires comprehensive control structures and parameters of each system element, a challenging prerequisite as converters increasingly integrate into power systems and their internal specifics remain largely inaccessible. Conversely, the proposed modal analysis based on the impedance model (MAI) leverages only the impedance port characteristics to pinpoint system elements significantly influencing unstable modes. This study is the first to confirm the theoretical equivalency between MASS and MAI in terms of transfer functions, eigenvalues, and sensitivities, thus bridging the gap between detailed theoretical modeling and practical, accessible analyses. We further provide enhancements to the MAI method, including a revised element participation index, a transformer ratio-based admittance sensitivity adjustment, and an impedance splitting-based sensitivity analysis considering parameter variations. Validation through numerical simulations on a modified IEEE 14-bus system underscores the efficacy of our approach. By examining the interplay between different elements and system modes in high CIG environments, this study offers insights and a foundational framework for delineating the oscillatory modes' participation and stability characteristics of power systems with substantial CIG integration.
format Preprint
id arxiv_https___arxiv_org_abs_2406_00421
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Modal Analysis of Power System with High CIG Penetration Based on Impedance Models
Zheng, Le
Zheng, Jiajie
Lin, Jiajian
Liu, Chongru
Systems and Control
This paper explores the modal analysis of power systems with high Converter-Interfaced Generation (CIG) penetration utilizing an impedance-based modeling approach. Traditional modal analysis based on the state-space model (MASS) requires comprehensive control structures and parameters of each system element, a challenging prerequisite as converters increasingly integrate into power systems and their internal specifics remain largely inaccessible. Conversely, the proposed modal analysis based on the impedance model (MAI) leverages only the impedance port characteristics to pinpoint system elements significantly influencing unstable modes. This study is the first to confirm the theoretical equivalency between MASS and MAI in terms of transfer functions, eigenvalues, and sensitivities, thus bridging the gap between detailed theoretical modeling and practical, accessible analyses. We further provide enhancements to the MAI method, including a revised element participation index, a transformer ratio-based admittance sensitivity adjustment, and an impedance splitting-based sensitivity analysis considering parameter variations. Validation through numerical simulations on a modified IEEE 14-bus system underscores the efficacy of our approach. By examining the interplay between different elements and system modes in high CIG environments, this study offers insights and a foundational framework for delineating the oscillatory modes' participation and stability characteristics of power systems with substantial CIG integration.
title Modal Analysis of Power System with High CIG Penetration Based on Impedance Models
topic Systems and Control
url https://arxiv.org/abs/2406.00421