灵活性(工程)
计算机科学
热能储存
储能
可再生能源
收入
火力发电站
工艺工程
分布式计算
环境经济学
工程类
功率(物理)
废物管理
经济
电气工程
会计
管理
物理
生物
量子力学
生态学
作者
Zelong Lu,Jianxue Wang,Jianxue Wang,Linquan Bai,Yunpeng Xiao,Haotian Li
出处
期刊:IEEE Transactions on Power Systems
[Institute of Electrical and Electronics Engineers]
日期:2024-01-01
卷期号:39 (1): 1850-1866
被引量:25
标识
DOI:10.1109/tpwrs.2023.3253809
摘要
Carbon-capture-utilization-and-storage (CCUS) system plays a critical role in the process of decarbonization. This paper proposes a cooperative operation model for a CCUS-based thermal power plant and distributed energy resources. The critical purpose is to achieve a higher profit and flexibility together with a lower carbon emission for the CCUS system under the electricity, carbon, ancillary services, and synthesis fuel markets. First, to enhance the operational flexibility in various markets, a critical focus of this paper is on elaborating feasible operation domain of the CCUS system through identifying the physicochemical processes associated with carbon dioxide (CO 2 ) treatment and multi-energy conversion. Second, a Nash-bargaining framework is developed to describe how the CCUS works with distributed energy resources cooperatively to consume cheap and clean renewables to treat CO 2 . Third, to solve the cooperative operation problem efficiently and accurately, an adaptive sequential cone programming (ASCP) method together with a progressive hedging variant of the Benders decomposition (PH-BD) algorithm are designed. Case studies indicate the total revenue of the thermal power plant under the cooperative mode is improved by up to 8.85% and 66.53% compared with the individual mode with and without the CCUS. Further, the solution quality and efficiency of proposed methods are verified.
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