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首页> 外文期刊>Energies >Online Estimation of Peak Power Capability of Li-Ion Batteries in Electric Vehicles by a Hardware-in-Loop Approach
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Online Estimation of Peak Power Capability of Li-Ion Batteries in Electric Vehicles by a Hardware-in-Loop Approach

机译:硬件在环法在线估算电动汽车中锂离子电池的峰值功率

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Battery peak power capability estimations play an important theoretical role for the proper use of the battery in electric vehicles. To address the failures in relaxation effects and real-time ability performance, neglecting the battery’s design limits and other issues of the traditional peak power capability calculation methods, a new approach based on the dynamic electrochemical-polarization (EP) battery model, taking into consideration constraints of current, voltage, state of charge (SoC) and power is proposed. A hardware-in-the-loop (HIL) system is built for validating the online model-based peak power capability estimation approach of batteries used in hybrid electric vehicles (HEVs) and a HIL test based on the Federal Urban Driving Schedules (FUDS) is used to verify and evaluate its real-time computation performance, reliability and robustness. The results show the proposed approach gives a more accurate estimate compared with the hybrid pulse power characterization (HPPC) method, avoiding over-charging or over-discharging and providing a powerful guarantee for the optimization of HEVs power systems. Furthermore, the HIL test provides valuable data and critical guidance to evaluate the accuracy of the developed battery algorithms.
机译:电池峰值功率容量估算对于在电动汽车中正确使用电池起着重要的理论作用。为了解决松弛效应和实时能力性能方面的故障,忽略了电池的设计限制和传统峰值功率能力计算方法的其他问题,考虑了基于动态电化学极化(EP)电池模型的新方法提出了电流,电压,充电状态(SoC)和功率的约束条件。建立了硬件在环(HIL)系统,用于验证基于在线模型的混合动力电动汽车(HEV)中使用的电池的峰值功率能力估算方法以及基于联邦城市驾驶时间表(FUDS)的HIL测试用于验证和评估其实时计算性能,可靠性和鲁棒性。结果表明,与混合脉冲功率表征(HPPC)方法相比,该方法可提供更准确的估计,避免了过充电或过放电,并为混合动力汽车的动力系统优化提供了有力的保证。此外,HIL测试提供了宝贵的数据和关键指导,以评估已开发电池算法的准确性。

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