Please use this identifier to cite or link to this item: http://dspace.aiub.edu:8080/jspui/handle/123456789/2795
Title: Design and Simulation of a DC-Powered Solar-Based Water Pumping System
Authors: Mollah, Md. Rais Uddin
Hasan, Md. Habib A
Rokon, Md. Abu Rubayat
Roky, Md. Sakilur Rahman
Rahman, Md. Mushfiqur
Bhuyan, Muhibul Haque
Keywords: Maximum power point trackers
Photovoltaic systems
Irrigation
Simulation
Digital signal processors
Signal processing algorithms
Motors
Mathematical models
Water pumps
MATLAB
Issue Date: 10-Jun-2025
Publisher: IEEE
Citation: M. R. U. Mollah, M. H. A. H. Kabbyo, M. A. R. Rokon, M. S. R. Roky, M. M. Rahman, and M. H. Bhuyan, “Design and Simulation of a DC-Powered Solar-Based Water Pumping System,” Proceedings of the 27th International Conference on Computing and Information Technology (ICCIT), Long Beach Hotel, Cox’s Bazar, Bangladesh, 20-22 December 2024, pp. 1803-1808. Published on 10 June 2025. DOI: https://doi.org/10.1109/ICCIT64611.2024.11022426.
Series/Report no.: 27;
Abstract: This paper presents the design and simulation of a DC-powered solar-based water pumping system using MATLAB/Simulink. The system integrates a photovoltaic (PV) section, a Maximum Power Point Tracking (MPPT) algorithm, and a Permanent Magnet Direct Current (PMDC) motor operating a centrifugal pump. The objective is to enhance irrigation efficiency in rural and remote areas. Simulation results demonstrate the effectiveness of the designed system with an overall efficiency of nearly 74.70%. The MPPT algorithm achieves an average efficiency of 85%, while the motor and pump operate at ideal and maximum efficiencies of 99% and 88.78%, respectively. These findings validate the system’s capability to maintain high efficiency and reliable operation under varying solar conditions, highlighting its potential as a sustainable solution for off-grid water management and agricultural productivity in developing regions.
Description: This is a personal research.
URI: http://dspace.aiub.edu:8080/jspui/handle/123456789/2795
Appears in Collections:Publications From Faculty of Engineering

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