Multi‑time‑scale low‑carbon optimal scheduling of integrated energy systems considering hydrogen energy coupling and ladder carbon trading
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(1.State Grid Tianjin Wuqing Electric Power Supply Company, Tianjin 301700, China;2.School of Electrical and Electronic Engineering, North China Electric Power University, Baoding 071003, China)

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TM863

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    Abstract:

    In order to realize the efficient utilization of energy, as well as reduce carbon emissions and source load uncertainty, this paper proposes a multi?time?scale low?carbon collaborative optimal scheduling strategy for integrated energy systems considering hydrogen energy coupling and stepped carbon trading mechanism. Firstly, in order to effectively reduce the carbon emission level of the system, a ladder carbon trading mechanism is introduced, and a low?carbon economic scheduling model is established. Secondly, to give full play to the efficient and clean characteristics of hydrogen energy, a hydrogen energy coupling equipment model based on electrolytic cell, hydrogen fuel cell and methane reactor is established, and a multi?source energy storage model of electricity, heat and hydrogen is developed. Finally, with a purpose to reduce the impact of source and load prediction errors on the optimal scheduling of the system, and taking into account the response differences of electricity, heat, gas under different time scales, the scheduling models for day?ahead and intra?day multi time scale are constructed, respectively. The example analysis shows that the introduction of hydrogen energy coupling system and stepped carbon trading mechanism can not only improve the operation economy, but also reduce the carbon emissions, and the proposed multi time scale scheduling strategy can effectively suppress the power fluctuation, and reduce the uncertainty of the system source load.Key words: hydrogen energy coupling; multi time scale; carbon trading mechanism; collaborative optimization; multi?source energy storage

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赵北涛,刘光宇,韩东升.考虑氢能耦合及阶梯碳交易的综合能源系统多时间尺度低碳优化调度[J].电力科学与技术学报英文版,2023,38(3):35-46. ZHAO Beitao, LIU Guangyu, HAN Dongsheng. Multi‑time‑scale low‑carbon optimal scheduling of integrated energy systems considering hydrogen energy coupling and ladder carbon trading[J]. Journal of Electric Power Science and Technology,2023,38(3):35-46.

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  • Received:
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  • Online: September 19,2023
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