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Distributed low-carbon economic dispatch of integrated power and transportation system

Author

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  • Li, Zepeng
  • Wu, Qiuwei
  • Li, Hui
  • Nie, Chengkai
  • Tan, Jin

Abstract

Electric vehicles (EVs) are widely recognized as promising solutions to reduce carbon emissions from the transportation sector. The rapid proliferation of EVs intensifies the interdependency between the power distribution system (PDS) and transportation system (TS). This paper proposes a distributed low-carbon economic dispatch scheme for the integrated power and transportation system (IPTS). Carbon emissions from the TS are quantified by a carbon dioxide calculation model, and the emissions from the PDS are determined by the electricity generation of fossil-fueled generators and the carbon reduction of carbon capture and storage (CCS) devices. An integrated model reformulation method is employed to transform the original non-convex model into a tractable one. Then a distributed solution method based on the spectral penalty parameter based adaptive alternating direction method of multipliers (SPPA-ADMM) is developed to protect the privacy of the PDS and TS. The reformulated model is solved iteratively, and the penalty parameter of the SPPA-ADMM is adjusted adaptively to improve the convergence performance of the method. Numerical results on three test systems demonstrate the effectiveness of the proposed scheme in achieving low-carbon economic dispatch of IPTS. Moreover, case studies validate the superiority of the SPPA-ADMM based distributed solution method in computation performance.

Suggested Citation

  • Li, Zepeng & Wu, Qiuwei & Li, Hui & Nie, Chengkai & Tan, Jin, 2024. "Distributed low-carbon economic dispatch of integrated power and transportation system," Applied Energy, Elsevier, vol. 353(PA).
  • Handle: RePEc:eee:appene:v:353:y:2024:i:pa:s0306261923014988
    DOI: 10.1016/j.apenergy.2023.122134
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    6. Sun, Yuxin & Huang, Xujun & Wang, Guibin & Zhang, Xian & Qiu, Jing & Strbac, Goran, 2025. "Low-carbon traffic resilience-enhanced robust planning of coupled transportation and power distribution network based on modified user equilibrium model," Applied Energy, Elsevier, vol. 397(C).
    7. Li, Xue & Yang, Junlin & Du, Dajun & Zhou, Zhe & Li, Kang & Wu, Lei, 2025. "Resilient distributed economic dispatch for cyber–physical power systems considering carbon emissions trading and false data injection attacks," Energy, Elsevier, vol. 332(C).
    8. Liu, Ke & Liu, Yanli, 2024. "Incentive-willingness-decision framework: Unit discharge triangle-based maximum stable V2G capability evaluation," Applied Energy, Elsevier, vol. 374(C).
    9. Yang, Meng & Chen, Yue & Huang, Shihan & Chen, Laijun, 2025. "Recent advances in coordination and optimization of power-transportation systems: An overview," Renewable and Sustainable Energy Reviews, Elsevier, vol. 220(C).
    10. Wang, Pengda & Xiao, Jinxin & Huang, Sheng & Wu, Qiuwei & Zhang, Menglin & Wu, Xuan & Shen, Feifan & Ma, Kuichao, 2025. "An accelerated asynchronous distributed control for DFIG wind turbines and collection system loss minimization in waked wind farm," Applied Energy, Elsevier, vol. 377(PD).
    11. Wen, Jiaxing & Chen, Xianlong & Jia, Rong & Jiao, Yang & Cao, Ge & Guo, Yi & Cheng, Shucan & Zhang, Shuyan, 2025. "Distributed scheduling model of multi-network coupled energy system considering dynamic charging price mechanism and multiple utilization of hydrogen energy," Energy, Elsevier, vol. 335(C).
    12. Tian, Ye & Xu, Yinliang & Sun, Hongbin & Tai, Nengling, 2025. "Frequency-constrained microgrid-distribution network coordinated load restoration: A distributed carbon-aware optimization approach," Applied Energy, Elsevier, vol. 395(C).
    13. Wenxi Zhang & Nairong Tan & Tao Ma, 2025. "Mechanisms for the Low-Carbon Transition of Public Transport Energy Systems: Decoupling Emissions and Energy Consumption in Inner Mongolia and the Path to Three-Chain Synergy," Energies, MDPI, vol. 18(18), pages 1-23, September.
    14. Liu, Ke & Liu, Yanli & Si, Gang & Lu, Xin & Xie, Yan, 2025. "Punctual V2G scheduling circle: Evaluate and enhance transfer V2G capability through adaptive redistribution," Applied Energy, Elsevier, vol. 383(C).
    15. Zhao, Xiaolei, 2024. "Can green transportation accelerate carbon neutrality? Evidence from low-carbon transport systems pilot," Energy, Elsevier, vol. 313(C).

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