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Power Quality Improvement Based on Third-Order Sliding Mode Direct Power Control of Microgrid-Connected Photovoltaic System with Battery Storage and Nonlinear Load

Power Quality Improvement Third-Order Sliding is a M.Tech project topic for Electrical Engineering. Explore the IEEE-style abstract, reference paper,…

Power Quality Improvement Third-Order Sliding is a M.Tech project topic for Electrical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Power Quality Improvement Third-Order Sliding Project Details

Abstract

This research project addresses the critical challenge of power quality degradation in microgrid-connected photovoltaic (PV) systems integrated with battery energy storage systems (BESS) under highly nonlinear load conditions. To mitigate issues such as harmonic distortion, voltage fluctuations, and reactive power imbalances, a robust control framework utilizing Third-Order Sliding Mode (TOSM) theory combined with Direct Power Control (DPC) is proposed. The integration of TOSM-DPC aims to enhance the dynamic response of the grid-tied inverter, ensuring precise tracking of active and reactive power references while significantly reducing the chattering phenomenon inherent in conventional sliding mode controllers. The system architecture incorporates a PV array with Maximum Power Point Tracking (MPPT), a bidirectional DC-DC

converter for battery storage management, and a three-phase grid-connected inverter. Under varying solar irradiance and unbalanced nonlinear load profiles, the proposed TOSM-DPC strategy regulates the DC-link voltage and filters grid-side current harmonics. Simulation models are developed to evaluate the performance of the controller against standard PI and conventional sliding mode controllers. The methodology provides comprehensive guidance for modeling, controller design, and performance evaluation under diverse operating scenarios, contributing to robust power quality management in modern decentralized distribution networks.

Reference Paper Power Quality Improvement Based on Third-Order Sliding Mode Direct Power Control of Microgrid-Connected Photovoltaic System with Battery Storage and Nonlinear Load
Domain Electrical Engineering
Sub-Domain Control Systems / Sliding Mode Control
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