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Connecting Vehicle Requirements with Battery Design and Testing: Linking Drive Cycles with Material Properties

机译:用电池设计和测试连接车辆要求:将驱动循环与材料特性联系起来

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Traditional testing approaches for fundamental battery materials focus on highly artificial test profiles, for example constant current (CC) or constant voltage (CV) testing. Additionally, the currents used for capacity and cycle tests are often very low. These profiles are not indicative of the types of current/voltage profiles that the battery will experience during actual vehicle operation. As a result, these simple tests may fail to sufficiently elicit the reduction in performance and failure modes that occur during more dynamic cycling. In this paper, we outline an approach in which vehicle-level modeling is applied to regulatory drive cycles in order to derive power vs. time requirements for an energy storage system. These requirements are used to identify segments of the regulatory drive cycles that present significant challenges to the battery. Finally, the most stressing portions of the drive cycle are used to determine limiting physical characteristics of batteries. This approach allows us to accelerate materials testing and understand the potential benefits of novel materials when used on regulatory and other drive cycles.
机译:传统的基础电池材料专注于高度人工测试配置文件的传统测试方法,例如恒定电流(CC)或恒定电压(CV)测试。另外,用于容量和循环测试的电流通常非常低。这些简档并不指示电池在实际车辆操作期间经历的电流/电压轮廓的类型。结果,这些简单的测试可能无法充分引发在更动态循环期间发生的性能和故障模式的减少。在本文中,我们概述了一种方法,其中车辆级模型应用于调节驱动循环,以便获得能量存储系统的功率与时间要求。这些要求用于识别监管驱动循环的段,对电池具有显着挑战。最后,驱动循环的最强调部分用于确定电池的物理特性。这种方法使我们能够加速材料测试,并在用于监管和其他驱动循环时了解新材料的潜在好处。

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