Multi-Objective Scheduling of V2G-Enabled PEVs in Local Multi-Energy Systems: Balancing Profitability and Carbon Emissions Using Time-Varying Operational Profiles
Aug 2026· Distributed Generation & Alternative Energy Journal· 0 citations
Abstract
Plug-in electric vehicles (EVs) introduce both benefits and challenges to effective energy regulation when considered in contemporary power systems. To incorporate PEVs with V2G and G2V technology into LMESs, the authors of this study propose an in-depth MOO framework, which maximizes economic profitability and minimizes CO2 emissions through simulations of a system with gas carriers, electricity, heating, cooling, and other renewable energy sources (RES), including photovoltaics, CHP units, and thermal storage. The model relies on time-varying operational inputs, including varying electricity prices and variable RES generation profiles. Findings indicate that PEV integration progressively improves both economic and environmental performance across the examined scenarios. Compared with the No-PEV case, G2V operation increases operator profit from about 12000$ to about 18000$ while reducing CO2 emissions from about 6000 kg to about 4800 kg. When V2G is enabled, operator profit rises further to about 22000$ and total CO2 emissions decline to about 3500 kg. The Pareto frontier further confirms a clear trade-off between environmental and economic objectives, spanning approximately 1800-3500 kg CO2 and 12000$–22000$ across the sampled solutions. The study of PEV behavior in clusters further shows differentiated flexibility patterns for residential, commercial, and industrial users, enabling more effective scheduling of G2V and V2G interactions and better utilization of the grid. By promoting the use of V2G and scalable optimization strategies in multi-carrier energy systems, this work provides a solid foundation for sustainable energy management.
With the penetration of high-proportion wind power in integrated energy systems (IESs), demand-side flexibility resources need further exploration. This paper proposes a low-carbon optimal scheduling method incorporating ice-storage air conditioning and vehicle-to-grid (V2G) interaction of electric vehicles (EVs) and h...
Xiao-Ming Wang, Jin-Jin Ding, Wen-Guang Zhao et al.· Journal of Physics, Conferen...· 0 citations
Green hydrogen (H2) has gained considerable attention as a cornerstone of a zero-emission future. The global transportation sector is shifting from gasoline-powered vehicles toward electric vehicles (EVs) and hydrogen vehicles (HVs) to reduce emissions. This paper investigates a microgrid (MG) model comprising photovol...
M. Sayed, M. H. Alham, D. K. Ibrahim· Scientific Reports· 0 citations
To address the challenges posed by the increasing penetration of renewable energy and electric vehicles (EVs)—such as output fluctuations, time-varying electricity prices, and battery degradation—this study proposes a multi-timescale optimal scheduling method for microgrids that incorporates vehicle–grid interaction-ba...
Shang-Da Xie, Shao-Yuan Li, Gen-Ke Yang· Journal of Renewable and Sus...· 0 citations
The rapid and simultaneous growth of electric vehicles (EVs) and hydrogen vehicles (HVs) has created an urgent need for integrated infrastructure capable of satisfying fundamentally different electricity and hydrogen demands while minimizing reliance on carbon-intensive grid electricity. This challenge is particularl...
Vehicle-to-grid (V2G) is an important flexibility management technology for lower-carbon transport and the electricity grid. However, its effectiveness relies on the temporal alignment between the price incentives and grid dynamics. To overcome the challenge of coordinating electricity pricing with V2G deployment, we...
Bo-Wen Tian, Pei Zhao, Min Liu et al.· Environmental Science &...· 0 citations
Although incorporating renewable energy sources (RESs) into electric distribution networks (EDNs) offers significant sustainability and environmental benefits, improper management of RESs may threaten the technical performance of the network. To assess the safe integration of distributed generation (DG), the hosting...
Ziad M. Ali, S. H. Aleem, Faisal Aldawsari et al.· Scientific Reports· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.