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A comparison of system architectures for high-voltage electric vehicle batteries in stationary applications

机译:固定应用中高压电动汽车电池的系统架构比​​较

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An increasing global interest in clean energy alternatives requires new concepts for local storage of electricity. This leads to new research demand regarding suitable system architectures based on high-voltage batteries from electric vehicles. In this study, a new method for evaluating stationary system architectures is described. The assessment focuses on the system efficiency of different architectures. A sensitivity analysis is included to show further distinctions in criteria such as volume, weight and cost. Three system topologies for the use of new and second-hand batteries extracted from electric vehicles in stationary applications are presented. All components need to be able to operate in a bidirectional mode — the ability to absorb and release electricity from and into the grid. The first two topologies include one battery connected to the grid either with a DC/DC converter and a DC/AC inverter or with a DC/AC inverter and a transformer. The third topology involves the connection of two batteries in series with a DC/AC inverter, providing better characteristics in terms of the required power electronic components. The results show differences between one to two percentage points in efficiency. Moreover, the influence of parallelisation and various power distributions delivers close to five percentage points higher efficiency for the first topology with a DC/DC converter. Combined with the outcome of the sensitivity analysis, the topology with the DC/DC converter connected to the DC/AC inverter exhibits the best performance in the overall evaluation criteria.
机译:全球对清洁能源替代品的兴趣日益浓厚,因此需要在本地存储电能的新概念。这导致了对基于电动汽车高压电池的合适系统架构的新研究需求。在这项研究中,描述了一种评估固定系统架构的新方法。评估重点在于不同体系结构的系统效率。包括敏感性分析以显示标准在体积,重量和成本等方面的进一步区别。提出了在固定应用中使用从电动汽车提取的新旧电池的三种系统拓扑。所有组件都必须能够在双向模式下运行-能够吸收和释放来自电网的电能。前两个拓扑包括一个通过DC / DC转换器和DC / AC逆变器或通过DC / AC逆变器和变压器连接到电网的电池。第三种拓扑结构是将两个电池与DC / AC逆变器串联连接,从而在所需的电力电子组件方面提供更好的特性。结果表明效率之间存在1-2个百分点的差异。此外,对于采用DC / DC转换器的第一种拓扑,并行化和各种功率分配的影响使效率提高了近五个百分点。结合灵敏度分析的结果,将DC / DC转换器连接到DC / AC逆变器的拓扑在总体评估标准中表现出最佳性能。

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