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Simulation of hybrid electric vehicle based on a series drive train layout

机译:基于串联传动系统布局的混合动力汽车仿真

摘要

This paper provided a validated modeling and a simulation of a 6 degree freedom vehicle longitudinal model and drive-train component in a series hybrid electric vehicle. The 6-DOF vehicle dynamics model consisted of tire subsystems, permanent magnet synchronous motor which acted as the prime mover coupled with an automatic transmission, hydraulic brake subsystem, battery subsystem, alternator subsystem and internal combustion engine to supply the rotational input to the alternator. A speed and torque tracking control systems of the electric power train were developed to make sure that the power train was able to produce the desired throttle torque in accelerating the vehicle. A human-in-the-loop-simulation was utilized as a mechanism to evaluate the effectiveness of the proposed hybrid electric vehicle. The proposed simulation was used as the preliminary result in identifying the capability of the vehicle in terms of the maximum speed produced by the vehicle and the capability of the alternator to recharge the battery. Several tests had been done during the simulation, namely sudden acceleration, acceleration and braking test and unbounded motion. The results of the simulation showed that the proposed hybrid electric vehicle can produce a speed of up to 70 km/h with a reasonable charging rate to the battery. The findings from this study can be considered in terms of design, optimization and implementation in a real vehicle.
机译:本文提供了一个验证的建模和仿真的6自由度汽车纵向模型和串联混合动力电动汽车的传动系统组件。六自由度车辆动力学模型由轮胎子系统,充当原动机的永磁同步电动机与自动变速器,液压制动子系统,电池子系​​统,交流发电机子系统和内燃机组成,以将旋转输入提供给交流发电机。开发了动力传动系的速度和扭矩跟踪控制系统,以确保动力传动系能够在加速车辆时产生期望的节气门扭矩。在环仿真是一种机制,用于评估所提出的混合动力汽车的有效性。拟议的仿真被用作初步结果,以根据车辆产生的最大速度和交流发电机为电池充电的能力来识别车辆的能力。在仿真过程中已经进行了几项测试,即突然加速,加速和制动测试以及无限制运动。仿真结果表明,提出的混合动力汽车可以以高达70 km / h的速度向电池提供合理的充电速率。可以从真实车辆的设计,优化和实施方面考虑这项研究的结果。

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