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Energy visibility of a modeled photovoltaic/diesel generator set connected to the grid
by
Hassan, Qusay
, Abbas, Majid K.
, Al-Sagar, Zuhair S.
, Mohamad, Abdulmajeed
, Hasan, Ali
, Hussain, Ali N.
, Jaszczur, Marek
in
Ambient temperature
/ Carbon dioxide
/ Diesel fuels
/ diesel generator
/ Diesel generators
/ Economic analysis
/ economic objective
/ Economics
/ Energy
/ Energy consumption
/ Irradiance
/ Meteorological data
/ Optimization
/ photovoltaic system
/ Photovoltaics
/ Pricing
/ renewable energy
/ Rural areas
/ Solar energy
/ Visibility
2022
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Energy visibility of a modeled photovoltaic/diesel generator set connected to the grid
by
Hassan, Qusay
, Abbas, Majid K.
, Al-Sagar, Zuhair S.
, Mohamad, Abdulmajeed
, Hasan, Ali
, Hussain, Ali N.
, Jaszczur, Marek
in
Ambient temperature
/ Carbon dioxide
/ Diesel fuels
/ diesel generator
/ Diesel generators
/ Economic analysis
/ economic objective
/ Economics
/ Energy
/ Energy consumption
/ Irradiance
/ Meteorological data
/ Optimization
/ photovoltaic system
/ Photovoltaics
/ Pricing
/ renewable energy
/ Rural areas
/ Solar energy
/ Visibility
2022
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Energy visibility of a modeled photovoltaic/diesel generator set connected to the grid
by
Hassan, Qusay
, Abbas, Majid K.
, Al-Sagar, Zuhair S.
, Mohamad, Abdulmajeed
, Hasan, Ali
, Hussain, Ali N.
, Jaszczur, Marek
in
Ambient temperature
/ Carbon dioxide
/ Diesel fuels
/ diesel generator
/ Diesel generators
/ Economic analysis
/ economic objective
/ Economics
/ Energy
/ Energy consumption
/ Irradiance
/ Meteorological data
/ Optimization
/ photovoltaic system
/ Photovoltaics
/ Pricing
/ renewable energy
/ Rural areas
/ Solar energy
/ Visibility
2022
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Energy visibility of a modeled photovoltaic/diesel generator set connected to the grid
Journal Article
Energy visibility of a modeled photovoltaic/diesel generator set connected to the grid
2022
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Overview
The paper presents a technical and economic analysis for two energy systems (conventional and renewable) with grid connection. The investigation was carried out using an experimental measurement for the desired load and weather data (solar irradiance and ambient temperature), were 5.1 kWh the daily energy consumption as measured and 4.6 kWh/m
/day the annual average of the solar irradiance. The simulation process was done by using MATLAB and HOMER software at a 1 min time step resolution. The economic optimization objective presented for two energy system scenarios (i) photovoltaic/grid and (ii) diesel/grid, takes into account the economic aspects and component prices based on the Iraqi market and regulations. The diesel generator, very popular in rural areas, is designed to work during the same period as the photovoltaic system (only during day hours). The yearly operating hours were recorded at 4380 h/year, and energy generation was approx. 2349 kWh/year while fuel consumption was 1826 L/year. The results showed that the photovoltaic system in scenario (i) can generate about 7895 kWh, and for the diesel generator in scenario (ii), it can generate approximately 2346 kWh. Furthermore, for scenario (i) the levelized net present cost is $1079 and the cost of energy is about $0.035/kWh, while for scenario (ii) the levelized net present cost is $12,287 and the cost of energy is $0.598/kWh. The use of solar energy is highly recommended compared to diesel generators due to the lowest cost and delivery of energy to the grid. Furthermore, it can capture carbon dioxide by about 5295 kg/year.
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