碳价格
激励
温室气体
碳纤维
计算机科学
能量流
杠杆(统计)
数学优化
能量(信号处理)
追踪
环境经济学
经济
微观经济学
数学
算法
统计
复合数
生态学
机器学习
生物
操作系统
作者
Yaohua Cheng,Ning Zhang,Baosen Zhang,Chongqing Kang,Weimin Xi,Mengshuang Feng
标识
DOI:10.1109/tsg.2019.2935736
摘要
The interdependence of different energy forms in multiple energy systems (MESs) could leverage their synergies to reduce carbon emissions. However, such synergies cannot be exploited without the right incentives. This paper studies the lowcarbon operation of MESs by coordinating the transmission-level and distribution-level via the energy-carbon integrated prices. Energy prices are decided by locational marginal pricing principles in the transmission-level MES. At the same time, the carbon emissions of different energy systems are uniformly priced using a carbon emission flow (CEF) model based on the consumers' actual emission contributions by tracing the embedded flow of CO 2 . Various distribution-level MESs modeled by energy hubs (EHs) are independently operated in response to the variation in the integrated prices. The whole bi-level model formulates an equilibrium problem and is solved iteratively. Case studies based on two MESs at different scales illustrate the effectiveness and benefit of the proposed carbon pricing method in reducing carbon emissions more efficiently than current methods.
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