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Development of a multibody systems model for investigation of the effects of hybrid electric vehicle powertrains on vehicle dynamics

机译:开发用于研究混合动力电动汽车动力总成对车辆动力学影响的多体系统模型

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摘要

With ever increasing numbers of Hybrid Electric Vehicles (HEV’s) being developed, come new challenges in the field of automotive engineering. Whilst there has been considerable work conducted on HEV’s from a powertrain, efficiency, and control systems perspective, very little work has been instigated in the field of how the introduction of such hybrid systems effect passive vehicle dynamics. One of the possible obstacles in the way of such studies is the multitude of powertrain architectures that are present or possible in HEV’s. This obsta-cle can make investigations very application specific, and leads to inefficiencies in the modelling process. \ud This paper discusses the development of a model constructed in Dymola in order to investigate the effects of hybrid powertrains on ride and handling. The modelling methodology is presented, along with model based testing and validation of component and the full vehicle models.\ud Whilst the development of the model is introduced for a specific study, it is shown that the way in which the model has been developed lends itself easily to use in other fields. It is shown that the modular construction of the model, and the physical, object orientated modelling approach facilitated by Dymola, allow varying numbers and complexities of component models to be utilised within the same basic model. Such an approach means that one base model can be utilised for differing hybrid architectures for ride, handling and drivability studies thus reducing modelling time and complexity.\ud
机译:随着混合动力汽车(HEV)数量的不断增长,在汽车工程领域提出了新的挑战。尽管从动力总成,效率和控制系统的角度对混合动力汽车进行了大量的工作,但是在这种混合动力系统的引入如何影响被动车辆动力学方面,几乎没有开展任何工作。这类研究的可能障碍之一是混合动力汽车中存在或可能存在的多种动力总成架构。这种障碍可能使调查非常具有针对性,并且导致建模过程效率低下。 \ ud本文讨论了在Dymola中构建的模型的开发,以研究混合动力总成对行驶和操纵的影响。介绍了建模方法,以及基于模型的零部件和完整车辆模型的测试和验证。\ ud虽然针对特定研究介绍了模型的开发,但它表明模型的开发方法很适合本身很容易在其他领域使用。结果表明,该模型的模块化构造以及Dymola促进的物理,面向对象的建模方法,允许在同一基本模型中利用不同数量和复杂性的组件模型。这种方法意味着一个基本模型可以用于不同的混合动力体系结构,以进行行驶,操纵和驾驶性能研究,从而减少建模时间和复杂性。

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