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Thermoelectric Modeling and Online SOC Estimation of Li-Ion Battery for Plug-In Hybrid Electric Vehicles

机译:插电式混合动力汽车锂离子电池的热电建模和在线SOC估算

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摘要

The increasing oil price, energy demand, and environmental concern are leading to a global switch towards Plug-In Hybrid Electric Vehicles (PHEVs). In a PHEV, Li-ion battery is considered as the primary propelling source. Therefore, an accurate battery model is required to predict the I-V characteristic and dynamic behavior of a battery. This paper presents a highly effective thermoelectric model of Li-ion battery developed in Simulink. An algorithm is proposed for estimation of state of charge (SOC) and open circuit voltage (OCV) adaptively to notify the exact SOC level for better utilization of battery power and optimal vehicle performance. Thermal behavior of Li-ion battery is investigated for wide temperature range and its effect on resistance, capacity, and OCV is recorded. The minimum SOC level to which battery can get depleted is calculated using gradient method. The proposed simulation results are analyzed with those of earlier models and found to be better.
机译:不断上涨的石油价格,能源需求和对环境的关注正导致全球转向插电式混合动力汽车(PHEV)。在插电式混合动力汽车中,锂离子电池被视为主要的推进源。因此,需要一个准确的电池模型来预测电池的I-V特性和动态行为。本文介绍了Simulink开发的一种高效的锂离子电池热电模型。提出了一种算法,用于自适应地估计充电状态(SOC)和开路电压(OCV),以通知确切的SOC级别,以更好地利用电池电量和优化车辆性能。研究了锂离子电池在宽温度范围内的热行为,并记录了其对电阻,容量和OCV的影响。电池可能耗尽的最小SOC水平是使用梯度法计算的。拟议的仿真结果与早期模型的分析结果相比较,发现更好。

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  • 来源
    《Modelling and simulation in engineering》 |2016年第2016期|2353521.1-2353521.12|共12页
  • 作者单位

    Electrical and Electronics Engineering Department, B.I.T.S. Pilani, Jhunjhunu, Rajasthan 333031, India;

    Electrical and Electronics Engineering Department, B.I.T.S. Pilani, Jhunjhunu, Rajasthan 333031, India;

    Electrical and Electronics Engineering Department, B.I.T.S. Pilani, Jhunjhunu, Rajasthan 333031, India;

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