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A new approach to consider the influence of aging state on Lithium-ion battery state of power estimation for hybrid electric vehicle

机译:考虑老化状态对混合动力电动汽车功率估算锂离子电池状态影响的新方法

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Battery State of Power (SoP) estimation is one of the most crucial tasks of the battery management system in electric and hybrid electric vehicles. The inevitable error in estimates of battery State of Charge (SoC) and State of Health (SoH) is a cause of inaccuracies towards estimating the SoP for an aged battery. To overcome this, the present study aims to propose a new approach for predicting an aged cell SoP in which no a priori knowledge of battery SoH is required and the estimation method is robust to inaccuracies of SoC estimates. Accordingly, a combined reference mode of constant-current and constant-voltage is utilized to estimate fresh cell SoP which is then adapted to various aging states using a model-less control system. The control system, which belongs to a class of fuzzy logic-based controllers, benefits form a closed-loop framework leading to a more reliable and accurate SoP estimate. For verification, an experimental setup comprised of fresh and aged LiFePO4 cell samples is designed and the extracted data are utilized in a Model-in-the-Loop simulation for a hybrid electric vehicle. The results demonstrate the improved accuracy and robustness of SoP estimation while achieving a guaranteed safe operation of battery. (C) 2019 Elsevier Ltd. All rights reserved.
机译:电池电量状态(SoP)估计是电动和混合动力电动汽车中电池管理系统的最关键任务之一。电池充电状态(SoC)和健康状态(SoH)估计中不可避免的误差是估计老化电池的SoP不准确的原因。为了克服这个问题,本研究旨在提出一种新的方法来预测老化的电池SoP,其中不需要电池SoH的先验知识,并且该估计方法对于SoC估计的不准确性是鲁棒的。因此,利用恒定电流和恒定电压的组合参考模式来估计新鲜电池SoP,然后使用无模型控制系统将其适应于各种老化状态。该控制系统属于一类基于模糊逻辑的控制器,它的优点是形成了闭环框架,从而使SoP估计更为可靠和准确。为了进行验证,设计了一个由新鲜的和老化的LiFePO4电池样品组成的实验装置,并将提取的数据用于混合动力电动汽车的模型仿真中。结果证明了SoP估计的准确性和鲁棒性得到了提高,同时实现了电池安全运行的保证。 (C)2019 Elsevier Ltd.保留所有权利。

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