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Reduction of aging-effects by supporting a conventional battery pack with ultracapacitors

机译:通过使用超级电容器支持传统电池组来减少老化效应

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This contribution investigates the reduction of aging-effects by using a hybrid energy storage system (HESS). The system consists of a Lithium-ion (Li-ion) battery and an ultracapacitor. The scenario is a challenging use-case in public-transport in a large megacity - Istanbul, Turkey. Mobility data was recorded onsite and used for a holistic vehicle model in order to carry out long-term aging simulations. The goal was to find out if and to what extent aging can be reduced by adding an ultracapacitor unit. It was analyzed if this measure would economically be better than reducing the battery aging impact by oversizing the battery. Results show that a HESS can increase a battery unit's lifespan more cost effectively than the oversizing of the battery-only-storage, but not by a significant amount. The magnitude of the economic impact strongly depends on external factors, such as price fluctuations. Ultimately, it was found that the concept is not economically efficient, given the current technical and financial situation.
机译:该文章研究了通过使用混合储能系统(HESS)来减少老化效应的方法。该系统由一个锂离子(Li-ion)电池和一个超级电容器组成。该场景是在土耳其伊斯坦布尔的一个大城市中,公共交通中具有挑战性的用例。流动性数据被现场记录下来,并用于整体车辆模型,以进行长期的老化模拟。目的是确定是否可以通过添加超级电容器单元来减少老化,以及在多大程度上可以减少老化。分析了此措施在经济上是否比通过加大电池尺寸来减少电池老化影响更好。结果表明,HESS可以比仅存储电池的尺寸过大而更经济有效地增加电池单元的使用寿命,但幅度不大。经济影响的大小在很大程度上取决于外部因素,例如价格波动。最终发现,鉴于当前的技术和财务状况,该概念在经济上并不有效。

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