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Ageing Integration in PEMFC Range Extender Model for On-Board Prognostic Applications

机译:PEMFC范围扩展模型的老化集成在板载预后应用

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The deployment of a FC range extender can be a suited solution to overcome the battery autonomy limitations in electrical vehicles and hybrid configurations. In the framework of the European project Giantleap, a Polymer Electrolyte Membrane Fuel Cell (PEMFC) range extender is integrated in an electrical bus to support the batteries' pack load demand. The prediction of both the FC ageing and its interactions with the balance of plant (BoP) is considered as a strategical approach to anticipate and consequently reduce the FC system performance degradations. A PEMFC stack model has been developed using the Energetic Macroscopic Representation formalism. The model integrates the stack ageing laws and is adapted for on-board prognostic and health management purposes. This paper presents shortly the model and its validation. For this purpose, the voltage losses increase with the stack ageing is presented. To prove the model genericity, two different ageing simulation results are proposed and compared with long-term test results. Data are referred to two different data-sets linked to two PEMFC stacks of the same technology, but of different generation.
机译:FC系列扩展器的部署可以是一个适用的解决方案,以克服电动车辆和混合配置中的电池自主限制。在欧洲项目Giantleap的框架中,聚合物电解质膜燃料电池(PEMFC)范围扩展器集成在电气总线中,以支持电池的包装负荷需求。对Fc老化的预测及其与植物平衡(BOP)的相互作用被认为是预期的战略方法,从而降低FC系统性能降低。使用了PEMFC堆栈模型,采用了能量宏观表示形式主义制定。该模型集成了堆栈老化法律,适用于板载预后和健康管理目的。本文不久呈现了模型及其验证。为此,提出了堆叠老化的电压损耗增加。为了证明模型常见性,提出了两种不同的老化模拟结果,并与长期测试结果进行了比较。数据被称为与同一技术的两个PEMFC堆叠相关的两个不同的数据集,但不同的一代。

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