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A Vehicle Systems Approach to Evaluate Plug-in Hybrid Battery Cold Start, Life and Cost Issues

机译:评估插电式混合动力电池冷启动,寿命和成本问题的车辆系统方法

摘要

The batteries used in plug-in hybrid electric vehicles (PHEVs) need to overcome significant technical challenges in order for PHEVs to become economically viable and have a large market penetration. The internship at Argonne National Laboratory (ANL) involved two experiments which looked at a vehicle systems approach to analyze two such technical challenges: Battery life and low battery power at cold (-7 ?C) temperature. The first experiment, concerning battery life and its impact on gasoline savings due to a PHEV, evaluates different vehicle control strategies over a pre-defined vehicle drive cycle, in order to identify the control strategy which yields the maximum dollar savings (operating cost) over the life of the vehicle, when compared to a charge sustaining hybrid. Battery life degradation over the life of the vehicle, and fuel economy savings on every trip (daily) are taken into account when calculating the net present value of the gasoline dollars saved. The second experiment evaluates the impact of different vehicle control strategies in heating up the PHEV battery (due to internal ohmic losses) for cold ambient conditions. The impact of low battery power (available to the vehicle powertrain) due to low battery and ambient temperatures has been well documented in literature. The trade-off between the benefits of heating up the battery versus heating up the internal combustion engine are evaluated, using different control strategies, and the control strategy, which provided optimum temperature rise of each component, is identified.
机译:插电式混合动力汽车(PHEV)中使用的电池需要克服重大的技术挑战,以使PHEV在经济上可行并具有较大的市场渗透率。在阿贡国家实验室(ANL)进行的实习涉及两个实验,这些实验研究了一种车辆系统方法来分析两个这样的技术挑战:电池寿命和低温(-7°C)时电池电量低。第一个实验涉及电池寿命及其对PHEV的影响,对汽油节省产生了影响,它在预定的车辆驾驶周期内评估了不同的车辆控制策略,以识别出可产生最大节余(运营成本)的控制策略。与维持电荷的混合动力车相比,车辆的使用寿命。在计算所节省的汽油美元的净现值时,会考虑到电池寿命在车辆使用寿命中的下降以及每次行程(每天)的燃油经济性节省。第二个实验评估了在寒冷的环境条件下,不同的车辆控制策略在加热PHEV电池(由于内部欧姆损耗)方面的影响。电池电量低和环境温度低引起的电池电量低(可用于车辆动力总成)的影响已在文献中得到了充分证明。使用不同的控制策略评估了加热电池与加热内燃发动机的好处之间的权衡,并确定了提供每个组件最佳温度升高的控制策略。

著录项

  • 作者

    Shidore Neeraj Shripad;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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