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Stochastic optimal integration of decentralized heat pumps in a smart thermal and electric micro-grid

机译:智能热电电网中分散热泵的随机最佳集成

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摘要

Heat pumps represent a link between different energy vectors and their application in thermal and electrical grids can improve the overall operational flexibility of the system. In this work, the optimal integration of electrically driven heat pumps within a hybrid distributed energy system is investigated. A multi-objective stochastic optimization methodology is proposed to evaluate the integrated optimal sizing and operation of the energy systems under uncertainties in climate, space occupancy, energy loads, and fuel costs. A case study is considered, namely a University campus, and two different configurations, with and without heat pumps, are compared. Both configurations include a cogeneration system, photovoltaic and solar thermal panels, and a wind turbine. The results show how the integration of heat pumps can reduce the operational cost of the system, increase the renewables share, provide a more robust design of the system, and moderate the risk of the investment. Indeed, the configuration with heat pumps entails a 50% higher expected value of the energy savings, a 28% increase of the renewable energy production, and higher energy savings in the worst-case scenario (13% vs. 5%).
机译:热泵代表不同能量向量之间的链接及其在热电网中的应用可以提高系统的总体操作灵活性。在这项工作中,研究了混合分布能量系统内电驱动热泵的最佳集成。提出了一种多目标随​​机优化方法,以评估气候,空间占用,能量负荷和燃料成本的不确定性下的能量系统的集成最佳尺寸和运行。考虑了一个案例研究,即大学校园,以及两种不同的配置,有和没有热泵。这两种配置包括热电联产系统,光伏和太阳能热面板和风力涡轮机。结果表明,热泵的整合如何降低系统的运营成本,增加可再生能源的共享,提供更强大的系统设计,并适中投资的风险。实际上,带有热泵的配置需要节能的预期值50%,可再生能源生产增加28%,更高的情况下节省了更高的情况(13%与5%)。

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