Mode Switching-Induced Instability of Multi-source Feed DC Microgrid

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Jiang, Shanshan, Sun, Zelin, Zhang, Jiankun, Geng, Hua
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909573225381888
author Jiang, Shanshan
Sun, Zelin
Zhang, Jiankun
Geng, Hua
author_facet Jiang, Shanshan
Sun, Zelin
Zhang, Jiankun
Geng, Hua
contents In DC microgrids (DCMGs), DC-bus signaling based control strategy is extensively used for power management, where mode switching plays a crucial role in achieving multi-source coordination. However, few studies have noticed the impact of mode switching and switching strategies on system voltage stability. To fill this gap, this paper aims to provide a general analysis framework for mode switching-induced instability in multi-source DCMGs. First, manifold theory is employed to analyze the stability of the DCMG switched system. Subsequently, the instability mechanism and its physical interpretation are explored. The positive feedback activated by the decreasing DC bus voltage during the switching process leads to instability. Switching strategy may inadvertently contribute to this instability. To improve stability, a novel control method based on mode scheduling is proposed, by adjusting switching strategy and thereby correcting the system trajectory. Finally, both real-time simulations and experimental tests on a DCMG system verify the correctness and effectiveness of theoretical analysis results.
format Preprint
id arxiv_https___arxiv_org_abs_2501_15833
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mode Switching-Induced Instability of Multi-source Feed DC Microgrid
Jiang, Shanshan
Sun, Zelin
Zhang, Jiankun
Geng, Hua
Systems and Control
In DC microgrids (DCMGs), DC-bus signaling based control strategy is extensively used for power management, where mode switching plays a crucial role in achieving multi-source coordination. However, few studies have noticed the impact of mode switching and switching strategies on system voltage stability. To fill this gap, this paper aims to provide a general analysis framework for mode switching-induced instability in multi-source DCMGs. First, manifold theory is employed to analyze the stability of the DCMG switched system. Subsequently, the instability mechanism and its physical interpretation are explored. The positive feedback activated by the decreasing DC bus voltage during the switching process leads to instability. Switching strategy may inadvertently contribute to this instability. To improve stability, a novel control method based on mode scheduling is proposed, by adjusting switching strategy and thereby correcting the system trajectory. Finally, both real-time simulations and experimental tests on a DCMG system verify the correctness and effectiveness of theoretical analysis results.
title Mode Switching-Induced Instability of Multi-source Feed DC Microgrid
topic Systems and Control
url https://arxiv.org/abs/2501.15833