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Technical Integration of Virtual Power Plants enhanced by Energy Storages into German System Operation with regard to Following the Schedule in Intra-Day

机译:关于按日执行时间表,将通过储能增强的虚拟电厂的技术集成到德国系统运行中

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The rising share of renewable energies presents major challenges in terms of ensuring electrical supply in Germany. Problems are caused by weather-dependent infeed of decentralized generation units. As a solution, different renewable energy sources are pooled in a Virtual Power Plant (VPP). In VPPs, these generation units are coordinated and scheduled in order to reduce deviations from forecasts and therefore allow operation as a conventional power plant. This paper evaluates the technical integration of VPPs into the German power system. The examined VPP is considered in a defined use case and consists of wind, photovoltaic and biomass generation units, enhanced by an energy storage. In order to coordinate systems, the operational concept of following the schedule in intra-day is focused. Therefore, a profit maximized schedule in day-ahead is developed which is to be followed in intra-day under economic aspects using mixed integer linear programming. In particular, benefits of system integration of energy storage in VPPs are presented. Results of case studies indicate a positive use of energy storage to reduce deviations from the schedule due to diverged weather forecasts, which has only small effects on VPP profit.
机译:在确保德国电力供应方面,可再生能源份额的不断提高提出了重大挑战。问题是由分散发电单元的天气相关供电引起的。作为解决方案,虚拟电厂(VPP)中汇集了不同的可再生能源。在VPP中,对这些发电单元进行了协调和调度,以减少与预测的偏差,因此可以作为常规电厂运行。本文评估了VPP在德国电力系统中的技术集成。在确定的用例中考虑了已检查的VPP,该VPP由风力,光伏和生物质发电单元组成,并通过储能进行了增强。为了协调系统,重点关注在日内遵循时间表的操作概念。因此,制定了提前一天获利最大化的计划,在经济方面,将使用混合整数线性规划在一天之内遵循该计划。特别是,介绍了VPP中储能系统集成的好处。案例研究结果表明,由于天气预报的差异,积极利用储能来减少与时间表的偏差,这对VPP的利润影响很小。

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