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Sector-Coupled District Energy Management with Heating and Bi-Directional EV-Charging

机译:扇区耦合区能源管理,加热和双向EV充电

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Intelligent district energy management with sector-coupling gains importance with the decentralization of the energy supply, as we urge towards a fast reduction of greenhouse gas emissions and aim at more efficient energy usage. By jointly optimizing and coordinating the electricity, mobility, and heating domain, the share of local renewable energy share can be increased, and costs can be decreased across sectors. This work mathematically describes a joint Sector-Coupled District Energy Management (SeCo-DEM) as a multi-objective mixed-integer linear program. The model includes combined heat and power, immersion heaters, battery storage, hot water storage, peak-load supply, and bi-directional electric vehicle chargers. Based on data from two research projects, we analyze the individual influence of different flexibility options in terms of costs and self-consumption. We find that combining bi-directional charging and immersion heaters is a cost-effective combination that can increase self-consumption from 68.14% to 93.70%.
机译:随着温室气体排放快速减少的,智能区能源管理与部门耦合耦合耦合耦合促进能源供应的权力下放。通过共同优化和协调电力,移动性和加热领域,可以增加当地可再生能源份额的份额,并且各部门可以减少成本。这项工作以数学介绍了一个联合部门耦合的地区能源管理(SECO-DEM),作为多目标混合整数线性计划。该模型包括混合热电电,浸没加热器,电池储存,热水储存,峰值负荷供应和双向电动车充电器。根据两项研究项目的数据,我们在成本和自我消费方面分析不同灵活性选择的个人影响。我们发现,双向充电和浸入加热器结合的是具有成本效益的组合,可以将自耗从68.14%增加到93.70%。

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