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Power-To-Gas concept for integration of increased photovoltaic generation into the distribution

机译:Power-To-Gas概念,用于将更多的光伏发电集成到配电中

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摘要

According to the Energy Strategy 2050 set forth by the Swiss federal government, Photovoltaic (PV) energy shall make up one fifth of the nation’s total energy production in 2050. Such a drastic expansion rate of PV and the resulting excess energy thereof can lead to so-called reverse power flow in the low voltage (LV) grid as demonstrated in previous studies. Power-to-Gas (PtG) represents a suitable storage solution to resolve the situation by absorbing the excess PV energy.  This paper presents a qualitative and quantitative feasibility analysis of the PtG technology in the future Swiss LV grid. For this purpose, PtG is integrated in simulation into the grid for absorbing the excess PV energy while producing hydrogen. This hydrogen is assumed to be sold in the mobility sector.  Three different operational scenarios are established with respect to the input energy source to the PtG plant, including the excess PV energy, curtailed PV excess energy and PV excess energy plus the energy from the grid.  Summing up the results, it can be concluded that the PtG plant is still far from economically viable even though significant improvement can be accomplished to the hydrogen production costs by adopting the active PV curtailment and by purchasing additional energy from the grid. The future study to be undertaken by the authors, with respect to economical viability of the PtG, will include other sources of value, including production of methane as main product, production of oxygen and heat as by-products, and provision of services such as biogas upgrading, frequency regulation and voltage.
机译:根据瑞士联邦政府制定的《 2050年能源战略》,到2050年,光伏(PV)能源将占该国能源总产量的五分之一。如此急剧的PV膨胀率以及由此产生的过剩能源可能导致如先前的研究所示,在低压(LV)电网中存在所谓的反向功率流。燃气发电(PtG)代表了一种合适的存储解决方案,可以通过吸收多余的PV能量来解决这种情况。本文对未来的瑞士低压电网中的PtG技术进行了定性和定量的可行性分析。为此,在仿真中将PtG集成到电网中,以吸收多余的PV能量,同时产生氢气。假定该氢在交通运输部门出售。针对PtG工厂的输入能源,建立了三种不同的操作方案,包括过量的PV能量,减少的PV过量能量和PV过量能量以及来自电网的能量。总结结果,可以得出结论,尽管通过采用主动光伏削减措施和从电网购买额外的能源可以显着改善制氢成本,但PtG电厂仍远未达到经济上的可行性。作者将就PtG的经济可行性进行的未来研究将包括其他价值来源,包括甲烷作为主要产品的生产,氧气和热量的副产品的生产以及诸如沼气升级,频率调节和电压。

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