Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration

This paper addresses the challenges in Voltage Source Inverter (VSI) systems connected to weak grids, where frequent impedance changes lead to instability and power quality issues. This research studies how changing grid impedance affects current distortion and the stability of a VSI. It proposes t...

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Main Authors: Harendra Pal Singh, Sourav Bose, Anurag K. Swami
Format: Article
Language:English
Published: European Alliance for Innovation (EAI) 2025-02-01
Series:EAI Endorsed Transactions on Energy Web
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Online Access:https://publications.eai.eu/index.php/ew/article/view/5788
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author Harendra Pal Singh
Sourav Bose
Anurag K. Swami
author_facet Harendra Pal Singh
Sourav Bose
Anurag K. Swami
author_sort Harendra Pal Singh
collection DOAJ
description This paper addresses the challenges in Voltage Source Inverter (VSI) systems connected to weak grids, where frequent impedance changes lead to instability and power quality issues. This research studies how changing grid impedance affects current distortion and the stability of a VSI. It proposes the stability analysis of a single loop controller and optimize its settings using various techniques (ZN-method, PSO, GA) to ensure VSI stability and meet current distortion limits (THD compliance), when grid impedance varies. The primary focus revolves around addressing two key challenges: managing impedance variations at the PCC and enhancing the tracking performance of the PI controller. The VSI-based system connected to the weak grid and in standalone mode is simulated on Typhoon HIL, to validate the effectiveness of obtained optimized controller parameters by changing various conditions like, the output power regulation and sudden load change in a standalone distribution network. The MATLAB/SIMULINK with m-files is utilized for the parameters optimization and controller model simulation purposes. This research is important for developing more reliable and resilient power systems, specifically by investigating the transient behaviour of VSI frequency and voltage under sudden changes, to ensure an uninterruptible power supply to critical loads.
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spelling doaj-art-dca6279510b1465cb7293ee6a5f23ecb2025-02-06T20:52:54ZengEuropean Alliance for Innovation (EAI)EAI Endorsed Transactions on Energy Web2032-944X2025-02-011210.4108/ew.5788Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid IntegrationHarendra Pal Singh0Sourav Bose1Anurag K. Swami2Govind Ballabh Pant University of Agriculture and Technology National Institute of Technology Srinagar Govind Ballabh Pant University of Agriculture and Technology This paper addresses the challenges in Voltage Source Inverter (VSI) systems connected to weak grids, where frequent impedance changes lead to instability and power quality issues. This research studies how changing grid impedance affects current distortion and the stability of a VSI. It proposes the stability analysis of a single loop controller and optimize its settings using various techniques (ZN-method, PSO, GA) to ensure VSI stability and meet current distortion limits (THD compliance), when grid impedance varies. The primary focus revolves around addressing two key challenges: managing impedance variations at the PCC and enhancing the tracking performance of the PI controller. The VSI-based system connected to the weak grid and in standalone mode is simulated on Typhoon HIL, to validate the effectiveness of obtained optimized controller parameters by changing various conditions like, the output power regulation and sudden load change in a standalone distribution network. The MATLAB/SIMULINK with m-files is utilized for the parameters optimization and controller model simulation purposes. This research is important for developing more reliable and resilient power systems, specifically by investigating the transient behaviour of VSI frequency and voltage under sudden changes, to ensure an uninterruptible power supply to critical loads. https://publications.eai.eu/index.php/ew/article/view/5788Controller stability criterionHeuristic optimization techniquePower qualityTotal Harmonic DistortionWeak grid conditionImpedance-based stability
spellingShingle Harendra Pal Singh
Sourav Bose
Anurag K. Swami
Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
EAI Endorsed Transactions on Energy Web
Controller stability criterion
Heuristic optimization technique
Power quality
Total Harmonic Distortion
Weak grid condition
Impedance-based stability
title Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
title_full Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
title_fullStr Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
title_full_unstemmed Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
title_short Overcoming Weak Grid Challenges: A Combined Approach to VSI Stability with Impedance Adjustment, Control Optimization, and Microgrid Integration
title_sort overcoming weak grid challenges a combined approach to vsi stability with impedance adjustment control optimization and microgrid integration
topic Controller stability criterion
Heuristic optimization technique
Power quality
Total Harmonic Distortion
Weak grid condition
Impedance-based stability
url https://publications.eai.eu/index.php/ew/article/view/5788
work_keys_str_mv AT harendrapalsingh overcomingweakgridchallengesacombinedapproachtovsistabilitywithimpedanceadjustmentcontroloptimizationandmicrogridintegration
AT souravbose overcomingweakgridchallengesacombinedapproachtovsistabilitywithimpedanceadjustmentcontroloptimizationandmicrogridintegration
AT anuragkswami overcomingweakgridchallengesacombinedapproachtovsistabilitywithimpedanceadjustmentcontroloptimizationandmicrogridintegration