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Effect of energy-regenerative braking on electric vehicle battery thermal management and control method based on simulation investigation

机译:基于仿真研究的能量制动对电动汽车电池热管理的影响及控制方法

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摘要

Battery thermal management is important for the safety and reliability of electric vehicle. Based on the parameters obtained from battery hybrid pulse power characterization test, a two-degree-of-freedom lumped thermal model is established. The battery model is then integrated with vehicle driving model to simulate real-time battery thermal responses. An active control method is proposed to reduce heat generation due to regenerative braking. The proposed control method not only subjects to the braking safety regulation, but also adjusts the regenerative braking ratio through a fuzzy controller. By comparing with other regenerative braking scenarios, the effectiveness of the proposed strategy has been validated. According to the results, the proposed control strategy suppresses battery temperature rise by modifying the charge current due to regenerative braking. The overlarge components of current are filtered out whereas the small ones are magnified. Therefore, with smaller battery temperature rise, more energy is recovered. Compared to the traditional passive heat dissipating, the proposed active methodology is feasible and provides a novel solution for electric vehicle battery thermal management. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电池热管理对于电动汽车的安全性和可靠性至关重要。基于电池混合脉冲功率特性测试获得的参数,建立了两自由度集总热模型。然后将电池模型与车辆驾驶模型集成在一起,以模拟实时电池热响应。提出了一种主动控制方法,以减少由于再生制动而产生的热量。所提出的控制方法不仅受制于制动安全调节,而且还通过模糊控制器来调节再生制动比。通过与其他再生制动方案进行比较,已验证了所提出策略的有效性。根据结果​​,提出的控制策略通过修改由于再生制动引起的充电电流来抑制电池温度升高。电流的过大分量被滤除,而小部分则被放大。因此,随着电池温度升高幅度减小,可以回收更多的能量。与传统的被动散热相比,本文提出的主动方法是可行的,为电动汽车电池的热管理提供了一种新颖的解决方案。 (C)2015 Elsevier Ltd.保留所有权利。

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