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Simulation for the analysis of a hybrid electric scooter powertrain

机译:混合动力电动踏板车动力总成分析的仿真

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摘要

This paper describes the mathematical modelling, analysis and simulation of a novel hybrid powertrain used in a scooter. The primary feature of the proposed hybrid powertrain is the use of a split power-system that consists of a one-degree-of-freedom (dof) planetary gear-train (PGT) and a two-dof PGT to combine the power of two sources, a gasoline engine and an electric motor. Detailed component level models for the hybrid electric scooter are established using the Matlab/ Simulink environment. A simple rule-based power control strategy is then established with the primary objective to optimize the fuel economy of the hybrid electric scooter. The performance of the proposed hybrid powertrain is studied using the developed model under four driving cycles. The simulation results verify the operational capabilities of the proposed hybrid system and show both the engine and the electric motor work in an optimal state under various operating conditions.
机译:本文介绍了一种用于踏板车的新型混合动力总成的数学建模,分析和仿真。所提出的混合动力总成的主要特征是使用分离动力系统,该系统由一个自由度(dof)行星齿轮系(PGT)和一个两个自由度的PGT组成,以结合两个动力源,汽油发动机和电动机。使用Matlab / Simulink环境建立了混合动力电动踏板车的详细组件级模型。然后建立了一个基于规则的简单功率控制策略,其主要目标是优化混合动力电动踏板车的燃油经济性。使用开发的模型在四个行驶周期下研究了提出的混合动力总成的性能。仿真结果验证了所提出的混合动力系统的运行能力,并显示了发动机和电动机在各种工况下均处于最佳状态。

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