Optimal Planning and Techno-Economic Analysis of P2G-Multi-Energy Systems

Torbira, Mtamabari and Darwish, Ahmed and Campean, Felician and Dao, Cuong (2025) Optimal Planning and Techno-Economic Analysis of P2G-Multi-Energy Systems. Sustainability (Switzerland), 17 (13): 5759. ISSN 2071-1050

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Abstract

Multi-energy systems (MESs) are designed to convert, store, and distribute energy to diverse end-users, including those in the industrial, commercial, residential, and agricultural sectors. This study proposes an integrated optimal planning optimization model for the techno-economic assessment of an MES integrated with power-to-gas (P2G) to meet electricity, heating, and cooling requirements while enabling sustainable energy solutions. The goal of the system optimal planning is to appropriately size the MES components to minimize the total planning costs. This includes not only the investment and operation costs but also the emissions cost and the cost of energy not supplied (ENS). The study implements P2G, electricity demand response (E-DRP), and thermal demand response (T-DRP), with four distinct operational scenarios considered for optimal planning, to evaluate the benefits of adopting MESs. A comprehensive validation study is presented based on a case study farm in Nigeria, with an MES investment model developed to assess feasibility. The results show that the integration of P2G with E-DRP and T-DRP gives the best operational scenario and planning cost for this farming application integration, leading to potential savings of up to USD 2.77 million annually from the proposed MES adoption.

Item Type:
Journal Article
Journal or Publication Title:
Sustainability (Switzerland)
Uncontrolled Keywords:
/dk/atira/pure/subjectarea/asjc/2100/2105
Subjects:
?? renewable energy, sustainability and the environmentmanagement, monitoring, policy and lawgeography, planning and development ??
ID Code:
230225
Deposited By:
Deposited On:
23 Jun 2025 09:50
Refereed?:
Yes
Published?:
Published
Last Modified:
30 Jun 2025 23:53