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Engine start-up optimal control for a compound power-split hybrid powertrain

机译:复合动力分流混合动力总成的发动机启动最优控制

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Engine start-up is the key for the control of mode transition from electric drive mode to electronic-Continuously Variable Transmission (e-CVT) mode for a compound power-split hybrid electric vehicle (HEV). With the engine shaft directly connected to the powertrain through a torsional damper spring (TDS), the engine ripple torque (ERT) before ignition is amplified by the powertrain and transmitted to the wheel, which has a significant impact on the vehicle. To improve the ride comfort of the mode transition process, an engine start-up control strategy is proposed. First, the ERT model and the dynamic model of power-split powertrain were built, and the mode transition process was analyzed. Second, an optimal crank track of engine speed was designed based on the dynamic programming aiming at ride comfort. Third, the engine reference acceleration curve was calculated according to the optimal speed track, and an optimal engine start-up control strategy was proposed. Finally, through simulations of the dynamic programming the influence factors for engine start-up were examined, and the experiment results indicate that the proposed engine start-up optimal control can effectively improve the ride comfort during mode transition. (C) 2018 Elsevier Ltd. All rights reserved.
机译:发动机启动是控制混合动力分流混合动力电动汽车(HEV)从电驱动模式到电子无级变速(e-CVT)模式的模式转换的关键。在发动机轴通过扭力减震器弹簧(TDS)直接连接到动力总成的情况下,点火前的发动机脉动转矩(ERT)被动力总成放大并传递到车轮,这对车辆产生了重大影响。为了提高模式转换过程的乘坐舒适性,提出了一种发动机启动控制策略。首先,建立了功率分配系统动力总成的ERT模型和动力学模型,并对模式转换过程进行了分析。其次,基于针对行驶舒适性的动态编程,设计了发动机转速的最佳曲柄轨迹。第三,根据最优速度轨迹计算出发动机参考加速度曲线,并提出了最优的发动机起步控制策略。最后,通过对动态程序设计的仿真,研究了发动机启动的影响因素,实验结果表明,所提出的发动机启动最优控制可以有效地提高模式转换过程中的乘坐舒适性。 (C)2018 Elsevier Ltd.保留所有权利。

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