研究目的
To investigate the performance of a hybrid PV-diesel power system for remote areas in Algeria, focusing on reducing CO2 emissions and fuel consumption while improving energy efficiency.
研究成果
The hybrid PV-diesel system shows promising results in reducing CO2 emissions and fuel consumption, especially under higher loads and solar radiation. The system's design should ensure that the diesel generator operates near its optimal point (70-80% of its nominal power) for maximum efficiency. Future work includes the implementation of a battery management system for energy storage to further enhance system stability and efficiency.
研究不足
The study is limited to the specific conditions of the BBM area in Algeria. The performance of the hybrid system may vary in other locations with different solar radiation levels and load demands. Additionally, the study does not extensively cover the economic aspects of implementing such systems.
1:Experimental Design and Method Selection:
The study combines theoretical and experimental approaches to analyze the performance of a PV/diesel hybrid energy system in a remote area of Algeria. It considers the load demand profile and solar radiation.
2:Sample Selection and Data Sources:
The study focuses on the Bordj Badji Mokhtar (BBM) area, utilizing real meteorological data and load demand profiles.
3:List of Experimental Equipment and Materials:
The system includes a PV array of 378 KWc coupled with a 15-MW diesel generator, TRIO‐20.0‐TL type inverter, and other necessary components for power generation and conversion.
4:0‐TL type inverter, and other necessary components for power generation and conversion.
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The study evaluates the system's performance under different operating conditions (winter and summer) by analyzing active power production, reactive power production, and power factor.
5:Data Analysis Methods:
MATLAB programming is used for simulation and analysis of the system's performance, including specific fuel consumption and CO2 emissions.
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