A Low-carbon Optimal Dispatch Model of a New Multi-energy Complementary Energy System with the Goal of Carbon Reduction

Qinglun Pang, Wenying Liu, Zimin Zhu, Yangnan Li, F. Maalouf, L. Lin
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Abstract

In the context of the carbon peaking and carbon neutrality goals, achieving a low-carbon integrated energy system is of great significance to the low-carbon development of the energy industry Based on this, this paper proposes a comprehensive energy carbon emission optimization and multi-energy market trading method with carbon reduction as the goal. Firstly, the carbon emissions of various types of energy in the integrated energy system are analyzed and a model of carbon emissions of various types of energy is established; secondly, this paper proposes a multi-energy market incentive mechanism with carbon reduction as the goal; based on this, a multi-energy market trading model is established to incentivize the low-carbon operation of integrated energy and the model is solved by particle swarm algorithm; finally, the simulation verifies that the proposed method can effectively reduce the Finally, the simulation verifies that the proposed method can effectively reduce the carbon emissions of the integrated energy system.
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以碳减排为目标的新型多能互补能源系统低碳优化调度模型
在碳调峰和碳中和目标背景下,实现低碳综合能源体系对能源行业的低碳发展具有重要意义。基于此,本文提出了一种以碳减排为目标的综合能源碳排放优化和多能源市场交易方法。首先,对综合能源系统中各类能源的碳排放进行了分析,建立了各类能源的碳排放模型;其次,提出了以碳减排为目标的多能源市场激励机制;在此基础上,建立了激励综合能源低碳运行的多能源市场交易模型,并采用粒子群算法对模型进行求解;最后,通过仿真验证了所提出的方法能够有效地降低综合能源系统的碳排放。
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