International Journal For Multidisciplinary Research
E-ISSN: 2582-2160
•
Impact Factor: 9.24
A Widely Indexed Open Access Peer Reviewed Multidisciplinary Bi-monthly Scholarly International Journal
Home
Research Paper
Submit Research Paper
Publication Guidelines
Publication Charges
Upload Documents
Track Status / Pay Fees / Download Publication Certi.
Editors & Reviewers
View All
Join as a Reviewer
Get Membership Certificate
Current Issue
Publication Archive
Conference
Publishing Conf. with IJFMR
Upcoming Conference(s) ↓
Conferences Published ↓
IC-AIRCM-T3-2026
SPHERE-2025
AIMAR-2025
SVGASCA-2025
ICCE-2025
Chinai-2023
PIPRDA-2023
ICMRS'23
Contact Us
Plagiarism is checked by the leading plagiarism checker
Call for Paper
Volume 8 Issue 2
March-April 2026
Indexing Partners
Hybrid PV-Battery Priority Logic Control on Dual Input and Multiple Output Converter
| Author(s) | Ms. Honey keerthana R, Mr. Amizhthan V, Mr. Jai kishore D, Mr. Suresh N |
|---|---|
| Country | India |
| Abstract | This project presents the implementation of a Hybrid PV– Battery Priority Logic system using a Dual Input Multiple Output (DIMO) converter, inspired by the reference work on high-gain DIMO topologies. The main objective is to design and simulate an efficient solar photovoltaic (PV) energy system integrated with a boost converter, MPPT (Maximum Power Point Tracking) controller, and battery storage in MATLAB/Simulink. The system is developed to maximize solar energy utilization and maintain a stable power supply under fluctuating sunlight conditions. The MPPT algorithm continuously tracks the PV panel’s optimal power point to achieve maximum energy extraction, while the PI (Proportional–Integral) controller regulates the DC-link voltage, ensuring smooth and stable operation. A battery with State of Charge (SoC) monitoring is introduced to store surplus energy and supply power during low irradiance or night-time operation. The priority control logic intelligently manages power distribution between the PV source, battery, and load, ensuring uninterrupted energy flow. Simulation results validate that the proposed hybrid system performs efficiently, maintaining voltage stability and reliable energy management even under dynamic environmental variations. The project demonstrates the potential for integration into standalone renewable systems, microgrids, and sustainable energy infrastructures, contributing to smarter and cleaner power solutions. |
| Keywords | DIMO Converter, Hybrid PV-Battery System,Mppt Control, PI Controller, Priority Logic. |
| Field | Engineering |
| Published In | Volume 8, Issue 1, January-February 2026 |
| Published On | 2026-02-28 |
Share this

E-ISSN 2582-2160
CrossRef DOI is assigned to each research paper published in our journal.
IJFMR DOI prefix is
10.36948/ijfmr
Downloads
All research papers published on this website are licensed under Creative Commons Attribution-ShareAlike 4.0 International License, and all rights belong to their respective authors/researchers.
Powered by Sky Research Publication and Journals