Collaborative carbon emission reduction in power supply and demand entities based on blockchain technology

块链 还原(数学) 减少需求 供求关系 碳纤维 供应链 计算机科学 业务 计算机安全 经济 微观经济学 医学 几何学 数学 病理 算法 营销 复合数
作者
Junxiang Li,Xuan Liu,Xinping Shao
出处
期刊:International Journal of Electrical Power & Energy Systems [Elsevier BV]
卷期号:157: 109840-109840 被引量:2
标识
DOI:10.1016/j.ijepes.2024.109840
摘要

The task of carbon emission reduction is severe in the power industry in China under the national goal of “carbon peaking and carbon neutrality”. The current carbon reduction is mainly based on supply side, but the effect is limited. To solve this problem, this paper proposed a coordinated supply–demand carbon emission reduction strategy based on blockchain technology. Based on the carbon emission reduction of complementary thermal power and renewable energy under the carbon trading mechanism of power supply side, users are made to participate in the individual level carbon trading mechanism with the help of blockchain technology, and the carbon emission reduction in power demand side is guided through the market mechanism, thus forming a supply–demand collaborative carbon emission reduction strategy of source side control and terminal inhibition. By analyzing the decision changes of both the supply and demand sides of electricity before and after the introduction of blockchain, quantifying the influence of blockchain on electricity quantity, electricity price and users’ utility in turn, and establishing the personal carbon trading mechanism supported by blockchain, a game model of two-side interaction between supply and demand was constructed. The simulation results show that the collaborative carbon emission reduction strategy based on blockchain gives full play to the potential of carbon reduction in power demand side, and the personal carbon trading mechanism can better inhibit terminal carbon emissions, which is conducive to the deep carbon emission reduction of the power industry.
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