International Journal of Innovative Research in Computer and Communication Engineering
ISSN Approved Journal | Impact factor: 8.771 | ESTD: 2013 | Follows UGC CARE Journal Norms and Guidelines
| Monthly, Peer-Reviewed, Refereed, Scholarly, Multidisciplinary and Open Access Journal | High Impact Factor 8.771 (Calculated by Google Scholar and Semantic Scholar | AI-Powered Research Tool | Indexing in all Major Database & Metadata, Citation Generator | Digital Object Identifier (DOI) |
| TITLE | A Review of Grid-Connected PV–BESS Integrated EV Charging Stations: Energy Management, Control Strategies, and Power Quality Enhancement |
|---|---|
| ABSTRACT | The rapid adoption of electric vehicles (EVs) has increased the demand for sustainable and efficient charging infrastructure. Conventional grid-dependent charging stations often face challenges related to peak power demand, grid congestion, and increased carbon emissions. To address these issues, renewable-energy-based charging stations integrated with photovoltaic (PV) systems and battery energy storage systems (BESS) have emerged as a promising solution. This paper presents a comprehensive review of grid-connected PV–BESS integrated EV charging stations, focusing on system architectures, energy management strategies, control techniques, and power quality enhancement methods. Recent advancements in bidirectional power converters, vehicle-to-grid (V2G) technology, intelligent energy management systems (EMS), and battery storage integration are critically analyzed. A conceptual framework consisting of a PV array, BESS, EV charging unit, EMS, and grid interface converter is proposed to optimize energy utilization and reduce grid dependency. Furthermore, simulation-based performance evaluation under varying solar irradiance and charging demand conditions demonstrates effective power flow management, stable DC-link voltage regulation, reduced harmonic distortion, and enhanced charging reliability. The results indicate that the proposed PV–BESS integrated charging station can significantly improve renewable energy utilization while minimizing stress on the utility grid. The study highlights the potential of intelligent renewable-energy-assisted charging infrastructure in supporting sustainable transportation and future smart grid applications. |
| AUTHOR | SHIVANI S. MULEY, G.D. SHINGADE PG Student, Department of Electrical Engineering, MGM University, JNEC, Chh. Sambhajinagarbia, India Assistant Professor, Department of Electrical Engineering, MGM University, JNEC, Chh. Sambhajinagar, India |
| VOLUME | 185 |
| DOI | DOI: 10.15680/IJIRCCE.2026.1406029 |
| pdf/29_A Review of Grid-Connected PV–BESS Integrated EV Charging Stations Energy Management, Control Strategies, and Power Quality Enhancement.pdf | |
| KEYWORDS | |
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