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  • 标题:Integrated Energy Multi-Objective Operation Optimization
  • 本地全文:下载
  • 作者:Zhao Liu ; Mengjin Hu ; Xianlong Zhao
  • 期刊名称:E3S Web of Conferences
  • 印刷版ISSN:2267-1242
  • 电子版ISSN:2267-1242
  • 出版年度:2020
  • 卷号:185
  • 页码:1-5
  • DOI:10.1051/e3sconf/202018501067
  • 出版社:EDP Sciences
  • 摘要:The Integrated Energy System (IES) offers a new approach to the energy dilemma. It introducesdemand-side response into the Regional Integrated Energy System (RIES) and proposes an operationaloptimization model considering Integrated Demand Side Response (IDSR) in the framework of RIES. Firstof all, the typical cold\themalelectric RIES is used as a framework to establish the multi-energy flowmodel of RIES based on the energy flow relationships among energy production, conversion andconsumption. Then, from the perspective of energy transfer, the potential to enhance renewable energyconsumptionby carrying out RIES to transfer the system energy flow is analyzed. Finally, the RIESoperation optimization model considering IDSR is established with the goal of the economy of systemoperation, considering the system energy balance and the operating constraints of each energy device, andthe solution algorithm is designed. Taking the RIES in a certain region as an example, the proposed methodand model were verified computationally, and the results showed that IDR can effectively improve systemeconomics and increase the level of renewable energy consumption.
  • 其他摘要:The Integrated Energy System (IES) offers a new approach to the energy dilemma. It introduces demand-side response into the Regional Integrated Energy System (RIES) and proposes an operational optimization model considering Integrated Demand Side Response (IDSR) in the framework of RIES. First of all, the typical cold hermal lectric RIES is used as a framework to establish the multi-energy flow model of RIES based on the energy flow relationships among energy production, conversion and consumption. Then, from the perspective of energy transfer, the potential to enhance renewable energy consumption by carrying out RIES to transfer the system energy flow is analyzed. Finally, the RIES operation optimization model considering IDSR is established with the goal of the economy of system operation, considering the system energy balance and the operating constraints of each energy device, and the solution algorithm is designed. Taking the RIES in a certain region as an example, the proposed method and model were verified computationally, and the results showed that IDR can effectively improve system economics and increase the level of renewable energy consumption.
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