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Systematic Design of Input- and Output-Split Hybrid Electric Vehicles With a Speed Reduction/Multiplication Gear Using Simplified-Lever Model

机译:使用简化杆模型的减速/乘法齿轮的输入和输出分流混合动力电动车的系统设计

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Power-split hybrid electric vehicles (HEV) employ a speed reduction gear (SRG) mainly to enhance acceleration performance. However, the full potentials of an additional gear on fuel economy and acceleration performance have not yet been thoroughly investigated due to a vast design space: 432 configurations with three design variables (i.e. two planetary gear ratios and a final drive gear ratio). In this paper, a systematic speed reduction gear design methodology is proposed to analyze the impact of a speed reduction (multiplication) gear on the performance of input- and output-split HEVs and select an optimal configuration. First, the physical and virtual design spaces of SRG (SMG) are defined and the relationship between two design spaces are identified. Second, performance metrics are evaluated within the virtual design space using the proposed simplified lever. The proposed approach completely eliminates the redundancy present in the physical design spaces, and thus, the impact of SRG (SMG) on the performance of input- and output-split configurations can be analyzed with the minimum computational burden. Lastly, the selected gear ratio is converted back to the physical planetary gear connections. The results confirm that SRG (SMG) can potentially either improve or deteriorate the acceleration performance and the fuel economy of split HEVs. Therefore, the full potential of speed reduction or multiplication gear should be thoroughly analyzed when designing split hybrid electric vehicles.
机译:功率分配混合动力电动车(HEV)采用减速齿轮(SRG),主要提高加速性能。然而,由于巨大的设计空间,额外齿轮对燃料经济性和加速性能的全部潜力尚未彻底调查:432个配置有三种设计变量(即两个行星齿轮比和最终驱动齿轮比)。本文提出了一种系统减速齿轮设计方法,用于分析减速(乘法)齿轮对输入和输出分裂HEV性能的影响,并选择最佳配置。首先,定义SRG(SMG)的物理和虚拟设计空间,并识别了两个设计空间之间的关系。其次,使用所提出的简化杆在虚拟设计空间内评估性能度量。所提出的方法完全消除了物理设计空间中存在的冗余,因此,可以通过最小计算负担分析SRG(SMG)对输入和输出分离配置性能的影响。最后,所选择的齿轮比被转换回物理行星齿轮连接。结果证实,SRG(SMG)可能会改善或劣化分裂HEV的加速性能和燃料经济性。因此,在设计分流混合动力车电动车时,应彻底分析减速或乘法档的全部潜力。

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