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Energy Management Analysis under Different Operating Modes for a Euro-6 Plug-in Hybrid Passenger Car

机译:欧式6插入式混合乘用车不同运行模式下的能源管理分析

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This article analyses the Energy Management System (EMS) of a Euro 6 C-segment parallel Plug-In Hybrid (PHEV) available on the European market, equipped with a Flywheel Alternator Starter (FAS). The car has various selectable operating modes, such as the Zero Emission Vehicle (ZEV), Blended and Sport, characterized by a different usage of the electric driving with significant effects on the electric range and on CO_2 emissions. The different hybrid control strategies were investigated applying the UNECE Regulation 83, used for the European type approval procedure, along the New European Driving Cycle (NEDC). To evaluate the influence of the forthcoming Worldwide Harmonized Light Vehicles Test Cycle (WLTC), which will replace the NEDC from September 2017, this testing procedure was also applied. Vehicle testing was carried out on a two-axle chassis dynamometer at the Vehicle Emission LAboratory (VELA) of the Joint Research Centre (JRC) of the European Commission. Through a limited amount of information, obtained as the results of the type approval procedure together with the characterization of the high voltage battery, it was possible to highlight, both in Charge Depleting and Charge Sustaining conditions, how the Internal Combustion Engine (ICE) works as a function of the battery State of Charge (SOC), vehicle speed, acceleration and coolant temperature. Moreover, the impact of different vehicle operating modes on CO_2 emissions and Electric Range, computed as prescribed by the European regulation, was clearly highlighted for the considered driving cycles, pointing out differences of about 20% in terms of electrical range, and of more than 70% in terms of CO_2 emissions.
机译:本文分析了欧洲市场上可用的欧6个C段并联插件混合动力(PHEV)的能量管理系统(EMS),配备了飞轮交流发电机启动器(FAS)。该汽车具有各种可选择的操作模式,例如零排放车辆(ZEV),混合和运动,其特征在于电动驱动的不同用途,在电范围和CO_2排放上具有显着影响。调查了不同的混合控制策略,沿着新的欧洲驾驶周期(NEDC)应用了用于欧洲批准程序的UNECE规则83。为了评估即将到来的全球统一的轻型车辆测试周期(WLTC)的影响,这将从2017年9月开始取代NEDC,但该测试程序也应用。车辆测试在欧盟联合研究中心(JRC)的车辆排放实验室(VELA)的双轴底盘测功机上进行。通过有限的信息,作为型式批准程序的结果与高电压电池的表征一起获得,可以突出电荷消耗和充电持续条件,内燃机(ICE)如何工作作为电池电量(SOC),车速,加速度和冷却剂温度的函数。此外,对于所考虑的驾驶循环,清楚地突出了不同车辆操作模式对CO_2排放和电力范围的影响和电力范围,以考虑的驱动周期突出显示,在电范围内指出大约20%的差异,并且超过在CO_2排放方面70%。

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