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文章摘要
基于新型电力系统的工业园区综合能源耦合优化运行方法研究
Research on integrated energy coupling optimization operation method of industrial park based on novel power system
Received:March 29, 2024  Revised:April 24, 2024
DOI:10.19753/j.issn1001-1390.2026.03.004
中文关键词: 工业负荷  综合能源  需求侧响应  新型电力系统
英文关键词: industrial load, integrated energy, response of demand side, novel power system
基金项目:国网江苏省电力有限公司科技项目(J2023136)
Author NameAffiliationE-mail
Meimei Duan Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd dmmdky@js.sgcc.com.cn 
Qifeng Huang Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd 13951086036@126.com 
Zhong Zhuang Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd leon_cz@126.com 
Chenghan Zhou* Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd jsepc_zhouch@163.com 
Kaijie Fang Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd fangkj@js.sgcc.com.cn 
Yixuan Huang Marketing Service Center of State Grid Jiangsu Electric Power Co,Ltd huangyixuan_0304@163.com 
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中文摘要:
      新型电力系统的建设对我国电力需求侧资源响应提出更高要求。作为我国电力需求侧的主要用户,工业负荷用电占比高、可调负荷潜力大,且其负荷曲线受复杂工艺、工序过程影响;另一方面,作为我国能源行业转型必然趋势,多能耦合将成为能源供给侧节能减排的重要手段。文章根据高耗能工业用户负荷聚类分析结果,提取各工序、工艺下的负荷关键指标,基于实际工业生产数据构建典型工艺过程用能模型,预测计及工艺过程特性的工业负荷响应曲线,以最小化日运行成本为目标,针对工业负荷用能与产出状态,提出基于新型电力系统的工业园区综合能源耦合优化运行模型,比较不同的系统规划方案对运行成本的影响,证明了所提模型的有效性。
英文摘要:
      With the rapid escalation of carbon dioxide emissions, the contradiction between economy, environment and energy is becoming more and more prominent, and the power generation industry, as a typical carbon emission subject, is facing the urgent requirement of low-carbon transformation. A carbon capture power plant with power-togas (P2G) was constructed, and the economy-environment-energy (3E) comprehensive evaluation index system of the power plant was established by analyzing the 3E characteristics of the power plant. In order to obtain the relevant data of the 3E evaluation indices, a two-stage robust optimal scheduling model of the power plant was constructed and solved using the constraint generation algorithm. Furthermore, the combination assignment method and technique for order preference by similarity to an ideal solution (GRA-TOPSIS) were designed to form the 3E comprehensive evaluation model. Simulation analyses were carried out with actual data to verify that the carbon capture power plant with P2G has better integrated economic, environmental and energy benefits compared with the WTGPPCC system and the WT-GFPP system under the environment of the electricity-carbon market, and that the integrated benefits brought by the carbon capture, utilization and storage (CCUS) technology to the system are sufficient to compensate for its high operating cost, and that the proposed 3E integrated evaluation model has good applicability.
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