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Fuel Economy Research on Series-Type HEV Intracity Buses with Different Traction Motor Capacity Combinations

机译:不同牵引电动机容量组合的串联式混合动力HEV城市公交车燃油经济性研究

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Research on HEV (hybrid electric vehicle) intracity buses has become a topic of interest because the well-known service routes of intracity buses and the frequent stop/go pattern make the energy management of the vehicle straightforward. Thus, the energy flow and the energy management of the intracity bus have been studied extensively in order to improve fuel economy. However, the HEV buses that have been studied previously were equipped with a single traction motor or with dual motors with the same capacity for the convenience of the equipment without considering the motoring or generating efficiency of the traction motor. Therefore, the energy flow from the engine/generator unit to the traction motor that has been optimized by many kinds of energy distribution strategies could not be transferred to the wheels in the most efficient manner. This paper investigates this aspect of the energy flow. It studies the traction motor energy distribution by investigating combinations of the different traction motors with the different motoring/generating energy distribution methodology. The research suggests that instead of using a single traction motor or dual motors with the same capacity, dual motors with the different capacity combinations should be used to access the best efficiency distribution map. The different capacity combinations here not only refer to the physical capacity but also to the ratio of electrical energy distributed to the traction motors. Thus, the proposed approach distributes the required motoring/generating energy to the dual motors with the better efficiency. Therefore the system efficiency increases both for motoring and generating and the fuel economy of the system becomes better. The simulation of the proposed method was executed on the Simulink and AMESim co-simulation platform.
机译:对混合动力汽车(HEV)城市公交车的研究已经成为人们关注的话题,因为城市公交车的公知服务路线和频繁的停车/出行方式使车辆的能源管理变得简单。因此,为了改善燃料经济性,已经广泛研究了城市内公交车的能量流和能量管理。但是,先前研究的HEV公交车配备了单牵引电动机或具有相同容量的双电动机,以方便设备使用,而无需考虑牵引电动机的电动或发电效率。因此,已经通过多种能量分配策略优化的从发动机/发电机单元到牵引电动机的能量流不能以最有效的方式传递到车轮。本文研究了能量流的这一方面。它通过研究不同牵引电动机与不同电动机/发电能量分配方法的组合来研究牵引电动机的能量分配。研究表明,代替使用单个牵引电动机或具有相同容量的双电动机,应使用具有不同容量组合的双电动机来获得最佳效率分布图。此处不同的容量组合不仅指物理容量,还指分配给牵引电动机的电能之比。因此,所提出的方法以更好的效率将所需的电动机/发电能量分配给双电动机。因此,用于机动和发电的系统效率均增加,并且系统的燃料经济性变得更好。在Simulink和AMESim联合仿真平台上对提出的方法进行了仿真。

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