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Standard battery energy storage system profiles: Analysis of various applications for stationary energy storage systems using a holistic simulation framework

机译:标准电池储能系统配置文件:使用整体仿真框架分析固定式储能系统的各种应用

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Lithium-ion batteries are used for both stationary and mobile applications. While in the automotive industry standard profiles are used to compare the performance and efficiency of competing vehicles, a similar comparative metric has not been proposed for stationary battery energy storage systems. Because standard profiles are missing, the comparable evaluation of different applications with respect to efficiency, long-term behavior and profitability is very difficult or not possible at all. This work presents a method to create these standard profiles and the results are available as open data for download. Input profiles including frequency data, industry load profiles and household load profiles are transformed into storage profiles including storage power and state of charge using a holistic simulation framework. Various degrees of freedom for the energy management system as well as for the storage design are implemented and the results are post-processed with a profile analyzer tool in order to identify six key characteristics, these being: full-equivalent cycles, efficiency, depth of cycles, resting periods, number of changes of sign and energy throughput between changes of sign. All applications examined in this paper show unique characteristics which are essential for the design of the storage system. E.g., the numbers for annual full-equivalent cycles vary from 19 to 282 and the efficiency lies between 83% and 93%. With aid of this work in conjunction with the open data results, users can test and compare their own cell types, operation strategies and system topologies with those of the paper. Furthermore, the storage power profiles and state of charge data can be used as a reference for lifetime and profitability studies for stationary storage systems.
机译:锂离子电池可用于固定式和移动式应用。尽管在汽车工业中,标准配置文件用于比较竞争车辆的性能和效率,但还没有为固定电池储能系统提出类似的比较标准。由于缺少标准配置文件,因此很难或根本不可能对效率,长期行为和盈利能力进行不同应用的可比评估。这项工作提出了一种创建这些标准配置文件的方法,结果可作为开放数据下载。使用整体仿真框架,将包括频率数据,行业负载配置文件和家庭负载配置文件的输入配置文件转换为包括存储功率和充电状态的存储配置文件。实施能源管理系统和存储设计的各种自由度,并使用配置文件分析器工具对结果进行后处理,以识别六个关键特征,这些特征是:全等效循环,效率,深度周期,休息时间,符号变化的次数以及符号变化之间的能量通过量。本文研究的所有应用程序均显示出独特的特性,这些特性对于存储系统的设计至关重要。例如,每年的全当量周期数从19到282不等,效率介于83%和93%之间。借助这项工作以及开放的数据结果,用户可以测试并比较他们自己的单元格类型,操作策略和系统拓扑,并与本文进行比较。此外,存储功率曲线和充电状态数据可以用作固定存储系统寿命和获利能力研究的参考。

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