Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia
Energy is one of the essential inputs for modernization and social development. Energy demand is increasing, and the primary energy source is fossil fuels, which negatively impact the environment. Energy saving and renewables are the potential solutions which could minimize environmental impact. Thi...
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my.um.eprints.391542024-10-19T05:58:59Z http://eprints.um.edu.my/39154/ Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia Zublie, Muhammad Firdaus Mohd Hasanuzzaman, Md. Abd Rahim, Nasrudin T Technology (General) TK Electrical engineering. Electronics Nuclear engineering Energy is one of the essential inputs for modernization and social development. Energy demand is increasing, and the primary energy source is fossil fuels, which negatively impact the environment. Energy saving and renewables are the potential solutions which could minimize environmental impact. This paper investigates the energy-saving and solar photovoltaic energy potential of an educational institution, Politeknik Sultan Azlan Shah (PSAS), Malaysia. The feasibility analysis was conducted by assuming that PSAS joined the Net Energy Metering (NEM 3.0) program, where PSAS, as a NEM consumer, has a tripartite supply agreement with renewable energy (SARE) with a distribution licensee known as Tenaga National Berhad (TNB). This paper focuses on zero capital expenditure (CAPEX) saving through a 20-year contract. This paper proposes a rooftop solar photovoltaic diagram using a NEM meter installed in the ring distribution system at PSAS. The estimated savings to be obtained by PSAS in the 20 years that the contract is in force are calculated based on the assumption that the installed solar system has a capacity of 688 kW. The maximum value of power generated by the system for a year is 990,720 kWh. The feasibility analysis found that the cumulative net savings estimate for PSAS based on the overall calculation for 21 years of solar use is RM 3,534,250. Meanwhile, the cumulative assessment of carbon emission reduction obtained in the same period is 14,559,760 kg CO2 or 14,559.76 tons of CO2, which would save 363,994 mature trees from being cut down. MDPI 2023-01 Article PeerReviewed Zublie, Muhammad Firdaus Mohd and Hasanuzzaman, Md. and Abd Rahim, Nasrudin (2023) Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia. Energies, 16 (2). ISSN 1996-1073, DOI https://doi.org/10.3390/en16020723 <https://doi.org/10.3390/en16020723>. 10.3390/en16020723 |
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T Technology (General) TK Electrical engineering. Electronics Nuclear engineering Zublie, Muhammad Firdaus Mohd Hasanuzzaman, Md. Abd Rahim, Nasrudin Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
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Energy is one of the essential inputs for modernization and social development. Energy demand is increasing, and the primary energy source is fossil fuels, which negatively impact the environment. Energy saving and renewables are the potential solutions which could minimize environmental impact. This paper investigates the energy-saving and solar photovoltaic energy potential of an educational institution, Politeknik Sultan Azlan Shah (PSAS), Malaysia. The feasibility analysis was conducted by assuming that PSAS joined the Net Energy Metering (NEM 3.0) program, where PSAS, as a NEM consumer, has a tripartite supply agreement with renewable energy (SARE) with a distribution licensee known as Tenaga National Berhad (TNB). This paper focuses on zero capital expenditure (CAPEX) saving through a 20-year contract. This paper proposes a rooftop solar photovoltaic diagram using a NEM meter installed in the ring distribution system at PSAS. The estimated savings to be obtained by PSAS in the 20 years that the contract is in force are calculated based on the assumption that the installed solar system has a capacity of 688 kW. The maximum value of power generated by the system for a year is 990,720 kWh. The feasibility analysis found that the cumulative net savings estimate for PSAS based on the overall calculation for 21 years of solar use is RM 3,534,250. Meanwhile, the cumulative assessment of carbon emission reduction obtained in the same period is 14,559,760 kg CO2 or 14,559.76 tons of CO2, which would save 363,994 mature trees from being cut down. |
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Article |
author |
Zublie, Muhammad Firdaus Mohd Hasanuzzaman, Md. Abd Rahim, Nasrudin |
author_facet |
Zublie, Muhammad Firdaus Mohd Hasanuzzaman, Md. Abd Rahim, Nasrudin |
author_sort |
Zublie, Muhammad Firdaus Mohd |
title |
Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
title_short |
Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
title_full |
Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
title_fullStr |
Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
title_full_unstemmed |
Modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in Malaysia |
title_sort |
modeling, energy performance and economic analysis of rooftop solar photovoltaic system for net energy metering scheme in malaysia |
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MDPI |
publishDate |
2023 |
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http://eprints.um.edu.my/39154/ |
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1814047529618112512 |