Design and Implementation of Bridge type Dual Input Single Output DC-DC Converter for Micro grid Applications
Author :
Assistant Professor Mrs.P. Rekha, Mounica K, Iyyappan R, Suriya SK, Mozhiyarasan RJourna Name:
International Journal of Science, Engineering and Technology Country :
IndiaVolume:
12 issue:4 Year:2024 Views : 379
Abstract:
This paper proposes a bridge-type dual-input single-output (DISO) DC-DC converter tailored for micro grid applications. The innovative converter design integrates the functionalities of boost, buck-boost converters, enabling efficient power conversion from two independent DC sources to a regulated DC output voltage suitable for micro grid integration. The bridge configuration utilizes switching elements to control the power flow from each input, achieving the desired voltage conversion with high efficiency. To validate the performance of converter’s, a detailed software simulation was conducted using the MATLAB/Simulink platform and incorporating key parameters such as the equivalent series resistance of passive elements and overall efficiency. Additionally, a hardware prototype of the improved converter was developed and successfully tested in a laboratory. The proposed converter has several advantages over current topologies, such as fewer components, a more compact design and better energy efficiency. These merits position the bridge-type DISO DC-DC converter as a highly effective solution for modern micro grid applications.
APA:Assistant Professor Mrs.P. Rekha, Mounica K, Iyyappan R, Suriya SK, Mozhiyarasan R. (Volume-12, Issue-4 -(Year-2024)). Design and Implementation of Bridge type Dual Input Single Output DC-DC Converter for Micro grid Applications. Retrieved from https://www.ijset.in/wp-content/uploads/IJSET_V12_issue4_637.pdf
Chicago:Assistant Professor Mrs.P. Rekha, Mounica K, Iyyappan R, Suriya SK, Mozhiyarasan R. "Design and Implementation of Bridge type Dual Input Single Output DC-DC Converter for Micro grid Applications" Example, Volume-12-issue-4-Year-2024-2348-4098. https://www.ijset.in/wp-content/uploads/IJSET_V12_issue4_637.pdf.