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A composite microgrid model along with statcom

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A composite microgrid model along with statcom

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A composite microgrid model integrated with a STATCOM (Static Synchronous Compensator) represents an advanced approach to enhancing power quality and stability in modern power distribution systems. Microgrids, which consist of distributed energy resources (DERs) like solar panels, wind turbines, and energy storage systems, often face challenges related to voltage fluctuations, harmonics, and reactive power imbalances.

The STATCOM plays a crucial role in this setup by dynamically injecting or absorbing reactive power to regulate voltage levels and improve grid stability. Unlike traditional compensators, STATCOMs offer faster response times and better control, making them ideal for microgrid applications where intermittent renewable energy sources can cause rapid power fluctuations.

In a composite microgrid model, the STATCOM works alongside other control strategies to ensure seamless transitions between grid-connected and islanded modes. It helps mitigate voltage sags, swells, and flickers—common issues in microgrids—while also supporting fault ride-through capabilities. By integrating a STATCOM, the system can achieve better power factor correction, reduce transmission losses, and enhance overall reliability.

This combination is particularly beneficial for remote or industrial microgrids where maintaining stable voltage and frequency is critical. Future advancements could explore adaptive control algorithms and AI-based optimization to further improve STATCOM performance in dynamic microgrid environments.