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Regular Paper | Open Access

Optimal Robust Low Carbon Allocation of Multi-energy Systems Considering Direct and Indirect Heating of Wind Energy and Carbon Trading

Huifang Dang1Yongqiang Han1( )Hao Yan2Zhe Chen3
State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun 130025, China
Department of Aotomation, Tsinghua University, Beijing 100084, China
Energy Technology Department, University of Aalborg, Aalborgr, 9220, Denmark
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Abstract

This paper proposes a low-carbon robust optimal allocation method for multi-energy systems (MES) considering direct and indirect heating integration of wind energy and carbon quota trading. First, direct heating characteristics of wind energy are analyzed, and the energy analysis model of stirring heating driven by wind energy is established. Next, the inertia characteristics of the heating and gas networks and their influence on carbon emission adjustment ability are analyzed, and the carbon quota cost of MES is revised. A low-carbon bi-level optimal allocation model of MES is established based on distributionally robust optimization (DRO). Finally, a simulation model is established based on actual operation data of a MES in Eastern Inner Mongolia, China. Simulation results show that the model proposed in this paper can improve the energy utilization efficiency of the system and effectively reduce carbon emissions.

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CSEE Journal of Power and Energy Systems
Pages 1562-1572

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Cite this article:
Dang H, Han Y, Yan H, et al. Optimal Robust Low Carbon Allocation of Multi-energy Systems Considering Direct and Indirect Heating of Wind Energy and Carbon Trading. CSEE Journal of Power and Energy Systems, 2026, 12(3): 1562-1572. https://doi.org/10.17775/CSEEJPES.2022.05540

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Received: 13 August 2022
Revised: 14 September 2022
Accepted: 01 November 2022
Published: 28 December 2023
© 2022 CSEE.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).