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Optimising energy flows and synergies between energy networks

机译:优化能源流和能源网络之间的协同作用

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The increased use of fluctuating renewable energy sources (RES) that is expected in the near future will lead to challenges concerning their full integration in the distribution grid, the reduction of RES curtailments and the mitigation of electric unbalances on the grid. Besides electric batteries (EB), other technologies, such as Power-to-Gas (P2G), Power-to-Heat (P2H) and Combined Heat and Power (CHP), make it possible to exploit synergies between various energy networks, thus alleviating problems of RES integration. In fact, when these technologies work simultaneously in a single energy system, their installed power mix, along with their optimised management and control, play a fundamental role in the energy optimisation of the whole system.The aim of this paper is to offer a methodological approach for the analysis of the synergies between the different energy networks in order to cope with the increasing RES penetration. The proposed model has been used to perform a sensitivity analysis on the installed capacity of the various technologies; moreover, different simplified system management logics have been analysed by changing the priority order of the renewable energy surplus usage. The obtained results have been compared from an energetic, economic and environmental point of view. (C) 2019 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:预计在不久的将来增加使用波动的可再生能源(RES),将带来挑战,包括如何将其完全集成到配电网中,减少RES的减少以及减轻电网上的电力不平衡。除了电池(EB)外,其他技术(例如,燃气发电(P2G),电热发电(P2H)和热电联产(CHP))也可以利用各种能源网络之间的协同作用,因此缓解RES集成的问题。实际上,当这些技术在单个能源系统中同时工作时,它们的安装功率组合以及优化的管理和控制将在整个系统的能源优化中发挥根本作用。本文的目的是提供一种方法论分析不同能源网络之间协同作用的方法,以应对不断增加的RES渗透率。所提出的模型已用于对各种技术的装机容量进行敏感性分析。此外,通过改变可再生能源剩余使用的优先顺序,分析了不同的简化系统管理逻辑。从能量,经济和环境的角度比较了获得的结果。 (C)2019作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可(http://creativecommons.org/licenses/by-nc-nd/4.0/)下的开放获取文章。

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