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AMT Control for Parallel Hybrid Electric Vehicles

机译:AMT控制并行混合动力电动车辆

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This paper focuses on the gearshift control of hybrid transmissions with high primary shaft inertia. This relates to the case of the electrification of a conventional AMT in a pre-transmission HEV configuration. A strategy based on energy considerations, by combining the use of the electric motor torque and the mechanical synchronization torque (by means of a synchromesh), has been developed on a detailed AMESIM transmission model for obtaining a high quality gearshift performance in a hybrid driveline. The electric motor is used to compensate its own inertia by accelerating/decelerating the primary shaft during the first phases of the synchronization. The synchromesh is mainly used at the end of the synchronization as the mechanical energy to be dissipated is reduced to an acceptable level. Beside the primary speed control, an important aspect is to phase the electrical and mechanical synchronization actions in order to optimize the global gearshift time and to guarantee robustness. The gearshift control algorithms have been successfully validated on a plug-in parallel hybrid demo car developed at IFPEN, showing that the electrification of entry-level transmissions is a viable solution for developing affordable hybrid vehicles.
机译:本文侧重于具有高初级轴惯性的混合传动的换档控制。这涉及在预传输HEV配置中传统AMT的电气化的情况。基于能量考虑的策略通过组合使用电动机扭矩和机械同步扭矩(借助于同步的机械同步扭矩(通过Synchromesh),在详细的AmeSim传输模型上开发,用于在混合动力车传动系中获得高质量的换档性能。电动机用于通过在同步的第一阶段期间加速/减速主轴来补偿其自身的惯性。同步romsh主要用于同步的结束时,随着要散发的机械能降低到可接受的水平。除了初级速度控制旁边,一个重要方面是阶段相位,以便优化全局换档时间并保证鲁棒性。换档控制算法已在IFPEN开发的插件并联混合演示车上成功验证,表明入门级传输的电气化是开发经济实惠的混合动力车辆的可行解决方案。

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