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Electrical operation behavior and energy efficiency of battery systems in a virtual storage power plant for primary control reserve

机译:虚拟存储电厂中用于主控制备用的电池系统的电气运行行为和能效

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摘要

A rising interest in battery systems for various applications needs a deep understanding of the system performance for technical and economical optimization. The electrical system behavior and the energy efficiency of two different Li-ion battery systems are presented in this paper. Both systems are designed for operation in a virtual storage plant with respect to the primary control reserve. The efficiency of both systems is analyzed including the battery, the power electronics and auxiliary units. Based on the overall energy efficiency of the electrical storage systems, a model is developed to show the impact on the operation and standby behavior. This model is transferred in a simulation framework investigating the application of battery systems towards primary control reserve. Real frequency data of continental European transmission system are used to simulate the behavior of the two systems in order to determine energy losses during operation. Primary control reserve is one possible application as grid support service for battery systems and is under current discussion. In this new field of battery application energy losses are a limiting factor for economic and technical qualification. The simulation identifies strengths and weaknesses of the investigated systems based on the determined efficiencies, and the results support an optimized operation strategy.
机译:对于各种应用的电池系统的兴趣日益浓厚,需要对系统性能进行深入的了解以实现技术和经济上的优化。本文介绍了两种不同的锂离子电池系统的电气系统行为和能效。相对于主要控制储备,这两个系统都旨在在虚拟存储工厂中运行。分析了两个系统的效率,包括电池,电力电子设备和辅助单元。基于蓄电系统的整体能效,开发了一个模型来显示对运行和待机行为的影响。该模型在模拟框架中转移,该框架研究电池系统对主控制储备的应用。欧洲大陆传输系统的实际频率数据用于模拟两个系统的行为,以确定运行期间的能量损失。主控制储备是一种可能的应用,可以作为电池系统的电网支持服务,目前正在讨论中。在电池应用的这一新领域,能量损失是经济和技术鉴定的限制因素。仿真基于确定的效率确定了所研究系统的优缺点,并且结果支持了优化的操作策略。

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