Energy Assessment of a Plug-in Hybrid Vehicle Propulsion Management System

Miguel Campino, N. Henriques, Gonçalo O. Duarte
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引用次数: 2

Abstract

Plug-In hybrid vehicles have a complex propulsion system management, trying to manage the conventional and electric motorization in the most energy efficient way according to the driving dynamics, topography and battery charge state. In this sense, the aim of this work is to analyze the energy performance of plug-in hybrid vehicles, based on road tests, under real conditions of use, focusing on the management system of the two energy sources present, varying the level of battery charge at the start of the test to visualize the impact of this change. To complement the analysis and in order to better understand the operation of the management system, a methodology for applying the VSP parameter is used, which allows the load state to be approximated according to the vehicle’s operating mode, alternating between the three modes according to the conditions at the time in question, prioritizing the electric motor when the state of charge of the battery is maximum. These results confirm the fact that plug-in hybrid vehicles allow better electricity management due to the diversity of external or internal charging sources, which makes this type of vehicle more efficient and versatile than conventional hybrids, allowing a reduction in fossil fuel consumption and consequently a reduction in the emission of pollutant gases, making this type of vehicle a very competitive alternative in the transport sector in view of the current challenges due to the goals present in the current European regulations. Keywords: Plug-in hybrid vehicles, Energy assessment, Climatization systems, Load support, State of charge
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插电式混合动力汽车推进管理系统的能量评估
插电式混合动力汽车具有复杂的推进系统管理,试图根据行驶动态、地形和电池充电状态,以最节能的方式管理传统和电动化。从这个意义上说,这项工作的目的是分析插电式混合动力汽车的能源性能,基于道路测试,在真实的使用条件下,重点关注两种能源的管理系统,在测试开始时改变电池充电水平,以可视化这种变化的影响。为了补充分析并更好地理解管理系统的运行,使用了一种应用VSP参数的方法,该方法允许根据车辆的运行模式近似负载状态,根据所讨论的时间条件在三种模式之间交替,当电池的充电状态最大时优先考虑电动机。这些结果证实,由于外部或内部充电源的多样性,插电式混合动力汽车可以更好地管理电力,这使得这种类型的汽车比传统的混合动力汽车更高效、更通用,从而减少了化石燃料的消耗,从而减少了污染物的排放。鉴于当前欧洲法规中存在的目标所带来的挑战,使这种类型的车辆成为运输部门非常有竞争力的替代方案。关键词:插电式混合动力汽车,能量评估,气候系统,负载支持,充电状态
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