ISSN No:2250-3676 ----- Crossref DOI Prefix: 10.64771 ----- Impact Factor: 9.625
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    An Interlinking Converter For Renewable Energy Integration Into Hybrid Grids

    A.BALAJI,SHAIK WAZEED

    Author

    ID: 2022

    DOI:

    Abstract :

    Distributed Generators (DGs) Based On Renewable Energy Sources Have Grown In Significance In The Electricity Industry As Global Warming Has Increased. Microgrids Offer A Great Framework For Creating Smart Grids, Which Boost System Resilience, Because Of Their Small Size And Ability To "island" While Supplying The Majority Of Their Loads During Certain Circumstances. Maintaining Load-generation Balance Is A Major Difficulty Because Microgrids Are Dominated By Renewable-based DGs, Which Are Characterized By Their Statistical Features And Unpredictable Power. Even Though Microgrids Are Now Commonly Utilized And Studied, There Is Still A Lot Of Disagreement On Whether They Should Use Direct Current (DC) Or Alternating Current (AC), With Most People Favoring A Combination Of The Two. This Article Presents An Interlinking Converter Architecture To Enable The Flexible Integration Of Renewable Energy Into Hybrid Grids. With One AC Port And Two DC Ports, The Proposed Converter Can Be Set Up As A DC-DC Converter, A DC-AC Inverter, Or A DC-DC/AC Multiport Converter, Making It A Flexible Choice For Merging Numerous DC And AC Sources. The Concept Is Supported By The MATLAB/SIMULINK Simulation Results, Which Validate Features Like Flexible Conversion, High Power Density, Low Leakage Currents, And Customizable Power Flow. Keywords - Hybrid DC/AC Grid, Interlinking Converter (IC), Renewable Energy Integration, Flexibility, Leakage Currents

    Published:

    02-2-2026

    Issue:

    Vol. 26 No. 2 (2026)


    Page Nos:

    1-11


    Section:

    Articles

    License:

    This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

    How to Cite

    A.BALAJI,SHAIK WAZEED, An Interlinking Converter for Renewable Energy Integration into Hybrid Grids , 2026, International Journal of Engineering Sciences and Advanced Technology, 26(2), Page 1-11, ISSN No: 2250-3676.

    DOI: