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Integrated port energy system considering integrated demand response and energy interconnection

机译:考虑了综合需求响应和能源互联的港口综合能源系统

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摘要

This paper proposes a framework for modeling an integrated port energy system (IPES). A configuration and sizing model of energy hub (EH) is built for the port area considering integrated demand response (IDR) and energy interconnection (EI). A comparative study of five different planning scenarios, traditional energy supply solution, EH solution, EH with IDR, EH with EI, and EH with both IDR and EI are conducted to identify the best option for minimizing the total planning cost of an IPES. Furthermore, the daily operating conditions of EHs are discussed and sensitivity analyses with varying energy prices, line loss rates, and IDR participation rates are performed to demonstrate the robustness of the model. The impacts of the uncertainties of ships using shore-side power on planning costs are also analyzed. Based on the proposed methods, numerical simulation results show the effectiveness of the EHs with multiple energy infrastructures in the IPES. In addition, after considering IDR and EI, the total planning cost decreases significantly, which demonstrates the necessity and benefits of IDR and EI.
机译:本文提出了一个用于建模综合港口能源系统(IPES)的框架。考虑到综合需求响应(IDR)和能源互连(EI),为港口区域构建了能源枢纽(EH)的配置和规模模型。对五个不同的规划方案进行了比较研究,这些方案包括传统能源供应解决方案,EH解决方案,具有IDR的EH,具有EI的EH以及具有IDR和EI的EH,从而确定了使IPES的总规划成本最小化的最佳选择。此外,讨论了EH的日常运行条件,并进行了能源价格,线损率和IDR参与率变化的敏感性分析,以证明该模型的稳健性。还分析了使用岸边动力的船舶的不确定性对计划成本的影响。基于所提出的方法,数值模拟结果显示了IPES中具有多个能源基础设施的EH的有效性。此外,在考虑了IDR和EI之后,总计划成本显着降低,这证明了IDR和EI的必要性和好处。

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