首页> 外文期刊>International Journal of Automotive Technology >DYNAMIC SIMULATION MODEL OF A HYBRID POWERTRAIN AND CONTROLLER USING CO-SIMULATION - PART II: CONTROL STRATEGY
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DYNAMIC SIMULATION MODEL OF A HYBRID POWERTRAIN AND CONTROLLER USING CO-SIMULATION - PART II: CONTROL STRATEGY

机译:混合动力的混合动力总成与控制器动态仿真模型-第二部分:控制策略

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摘要

The topic of this study is the control strategy of a mild hybrid electric vehicle (HEV) equipped with a continuously variable transmission (CVT). A brief power-train and vehicle configuration is introduced followed by the control strategy of the HEV with emphasis on two key parts. One of them is an ideal operating surface (IOS) that operates the CVT power-train optimally from the viewpoint of the tank-to-wheel efficiency. The other is a charge sustaining energy management to maintain the battery state of charge (SOC) within an appropriate level. The fuel economy simulation results of the HEV over standard driving cycles were compared with those of the baseline vehicle. Depending on the driving cycle, 1.3-20% fuel saving potential is predicted by the mild hybridisation using an integrated starter alternator (ISA). The detailed energy flow analysis shows that the majority of the improvement comes from the idle stop function and the benefits for electrical accessories. Additionally, the differences between the initial and the final SOC are in the range -1.0 ~ +3.8% in the examined cycle.
机译:这项研究的主题是配备无级变速器(CVT)的轻度混合动力电动汽车(HEV)的控制策略。简要介绍了动力总成和车辆配置,然后介绍了HEV的控制策略,重点是两个关键部分。其中之一是理想的操作表面(IOS),从油箱到车轮的效率角度来看,该表面可以最佳地操作CVT动力总成。另一个是维持电量的能量管理,以将电池电量(SOC)维持在适当的水平内。将HEV在标准行驶周期内的燃油经济性仿真结果与基准车辆的燃油经济性仿真结果进行了比较。根据行驶周期,通过使用集成式起动机交流发电机(ISA)进行的轻度混合动力可预测出1.3-20%的燃油节省潜力。详细的能量流分析表明,大部分改进来自怠速停止功能和电气附件的优点。此外,在所检查的周期中,初始SOC和最终SOC之间的差异在-1.0〜+ 3.8%范围内。

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