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Despite these abundant natural resources, the country is unable to generate enough electricity to support the national population. Apart from petroleum, Nigeria is also blessed with other natural resources including natural gas, tin, iron ore, coal, limestone, niobium, lead, zinc, and arable land. Nigeria is the 12th largest producer of petroleum in the world, and the 8th largest exporter, and has the 10th largest proven reserves. With 186 million inhabitants, Nigeria is the most populous country in Africa and the seventh most populous country in the world. Nigeria is often referred to as the “Giant of Africa,” owing to its large population and economy. It comprises 36 states and the Federal Capital Territory, where the capital, Abuja, is located. Its coast in the south lies on the Gulf of Guinea in the Atlantic Ocean. Nigeria is a federal republic in West Africa, bordering Benin in the west, Chad and Cameroon in the east, and Niger in the north. Unfortunately, electrical power supply in developing countries like Nigeria is unreliable, thereby making life difficult.
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Thus, the need for a reliable source of power supply cannot be over emphasized. IntroductionĮlectricity is one of the basic amenities of man because of its wide usage in various aspects of life. of the system, and the simulation results are presented in the paper. Dynamic simulation of the proposed PV system component of the hybrid power system is carried out in MATLAB/Simulink environment to study the power quality, harmonics, load impact, voltage transients, etc. The proposed PV system consists of PV arrays, DC–DC boost converter, MPPT controller, single-phase full-bridge inverter, inverter voltage mode controller (PI controller), and single-phase step-up transformer.
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The hybrid power system is made up of a diesel generator and a stand-alone PV system.
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Design of an optimum hybrid power system for the house is done with HOMER Pro software. The analysis of this thermal model is used to determine hourly load data.
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Thermal modelling of the house under consideration is carried out using BEopt software to accurately study the heat loss through the walls, windows, doors, and roof of the house.
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This paper presents the design and dynamic modelling of a hybrid power system for a house in Nigeria.