| [1] | Chen X. (2024). Green and low-carbon energy-use. Innov. Energy 1:100003. DOI:10.59717/j.xinn-energy.2025.100003 |
| [2] | Porzio J., McNeil W., Tong F. et al. (2026). Electrifying long-haul freight trucks reduces societal costs in the United States. Nat. Commun. 17:468. DOI:10.1038/s41467-025-67161-1 |
| [3] | Zhang H., Hu X., Hu Z., et al. (2024). Sustainable plug-in electric vehicle integration into power systems. Nat. Rev. Electr. Eng. 1:35−52. DOI:10.1038/s44287-023-00004-7 |
| [4] | Chen X. (2025). Urban Energy Use and Its Friendly Interaction with Power Grid. Energy Use 1:100011. DOI:10.59717/ipj.energy-use.2025.100011 |
| [5] | Hua H., Chen X., Gan L, et al. (2023). Demand-side joint electricity and carbon trading mechanism. IEEE Trans. Ind. Cyber-Phys. Syst. 2:14−25. DOI:10.1109/TICPS.2023.3335328 |
| Zhang Z., Hua H., Peng Q., et al. (2026). Commercial Vehicle Battery Swapping: A Pathway to Support Green and Low-Carbon Transport Energy Use. Energy Use 2:100038. https://doi.org/10.59717/ipj.energy-use.2026.100038 |
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Pathways to sustainable commercial vehicle battery swapping ecosystem for green and low-carbon transport