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Engine-start Control Strategy of P2 Parallel Hybrid Electric Vehicle

机译:P2并联混合动力电动车的发动机启动控制策略

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摘要

A smooth and fast engine-start process is important to parallel hybrid electric vehicles with an electric motor mounted in front of the transmission. However, there are some challenges during the engine-start control. Firstly, the electric motor must simultaneously provide a stable driving torque to ensure the drivability and a compensative torque to drag the engine before ignition. Secondly, engine-start time is a trade-off control objective because both , fast start and smooth start have to be considered. To solve these problems, this paper first analyzed the resistance of the engine start process, and established a physic model in MATLAB/Simulink. Then a model-based coordinated control strategy among engine, motor and clutch was developed. Two basic control strategy during fast start and smooth start process were studied. Simulation results showed that the control objectives were realized by applying given control strategies, which can meet different requirement from the driver.
机译:平滑且快速的发动机启动过程对并联混合动力电动车辆具有安装在变速器前面的电动机。但是,发动机启动控制期间存在一些挑战。首先,电动机必须同时提供稳定的驱动扭矩,以确保在点火之前拖动发动机的驾驶性和补偿扭矩。其次,发动机开始时间是一个权衡控制目标,因为都必须考虑快速启动和流畅的开始。为了解决这些问题,本文首先分析了发动机启动过程的电阻,并在Matlab / Simulink中建立了物理模型。然后开发了发动机,电机和离合器之间基于模型的协调控制策略。研究了快速启动和平滑开始过程中的两个基本控制策略。仿真结果表明,通过应用给定的控制策略来实现控制目标,这可以满足司机的不同要求。

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