LAPSE:2023.12201
Published Article
LAPSE:2023.12201
A Backcasting Analysis toward a 100% Renewable Energy Transition by 2040 for Off-Grid Islands
February 28, 2023
Abstract
The rapid increase in energy consumption results from population growth and technological advancement, while economic growth also relies heavily on the availability of energy. As fossil fuels become scarcer and greenhouse gas emissions increase, renewable energy sources are regarded as practical solutions to meet increasing energy demands. This study aims to develop a sustainable energy transition pathway for off-grid island communities in the Philippines. It adopts the concept of backcasting analysis, focusing on the demand and supply side of the energy transition. The transition considers three milestones: business as usual (BAU), minimal transition scenario (MTS), and absolute transition scenario (ATS). The techno-enviro-economic analysis is performed for each milestone to determine the optimal energy resource mix while addressing the three dimensions of the Energy Trilemma: energy security, energy equity, and environmental sustainability. The approach is implemented in three off-grid island municipalities in Palawan, Philippines: Araceli, Balabac, and Cuyo. The results suggest that the optimal electrification configuration for each island at the MTS is a hybrid system consisting of a diesel generator and solar photovoltaics with batteries, while at the ATS, it is a hybrid system of solar photovoltaics and wind with batteries. In addition, greenhouse gas emissions are reduced by 79.7% in Araceli, 78.7% in Balabac, and 41.2% in Cuyo from the BAU scenario to MTS. The actors involved in said transition are identified. A transitional pathway can be seen as a strategic plan to achieve the desired goal: to have a sustainable energy transition.
Keywords
backcasting analysis, HOMER, hybrid renewable energy, simulation optimization, techno-enviro-economic analysis
Suggested Citation
Supapo KRM, Lozano L, Tabañag IDF, Querikiol EM. A Backcasting Analysis toward a 100% Renewable Energy Transition by 2040 for Off-Grid Islands. (2023). LAPSE:2023.12201
Author Affiliations
Supapo KRM: Engineering Graduate Program, School of Engineering, University of San Carlos, Cebu City 6000, Philippines; Department of Electrical Engineering, Palawan State University, Puerto Princesa 5300, Philippines [ORCID]
Lozano L: Center for Research in Energy Systems and Technologies, School of Engineering, University of San Carlos, Cebu City 6000, Philippines; Department of Industrial Engineering, University of San Carlos, Cebu City 6000, Philippines [ORCID]
Tabañag IDF: Engineering Graduate Program, School of Engineering, University of San Carlos, Cebu City 6000, Philippines; Philippine Council for Industry, Energy and Emerging Technology Research and Development, Department of Science and Technology (DOST-PCIEERD), Tagu [ORCID]
Querikiol EM: Engineering Graduate Program, School of Engineering, University of San Carlos, Cebu City 6000, Philippines; Center for Research in Energy Systems and Technologies, School of Engineering, University of San Carlos, Cebu City 6000, Philippines; Department of [ORCID]
Journal Name
Energies
Volume
15
Issue
13
First Page
4794
Year
2022
Publication Date
2022-06-30
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15134794, Publication Type: Journal Article
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LAPSE:2023.12201
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https://doi.org/10.3390/en15134794
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