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Flatness-based Powertrain Control for Engine Start Applications in Hybrid Dual-Clutch Transmissions

机译:基于平面度的动力总成控制,用于混合双离合器变速箱的发动机启动应用

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This article considers the transition between pure electrical driving and hybrid driving in a hybrid dual-clutch transmission powertrain while following a prescribed vehicle speed reference. The key aspect here is a fast and smooth engine start without interruption of the demanded driving torque and minimum jerk. A two-degree-of-freedom controller with a flatness-based feedforward control and an asymptotic tracking control is presented for solving this task. We use a scheduled control structure to cope with the switched dynamical characteristics of the internal combustion engine while being started traversing sticktion, cranking and combustion. The control scheme switches from a torque-based control for the break-free of the engine to a speed-based control for the tracking of a reference engine speed trajectory. We illustrate the performance of the control scheme by means of meaningful simulations.
机译:本文考虑了混合动力双离合器变速箱动力总成中纯电动驱动和混合动力驱动之间的过渡,同时遵循了规定的车速基准。此处的关键方面是发动机快速平稳地启动,而不会中断所需的驱动扭矩和最小的冲击。为了解决这一任务,提出了一种具有基于平面度的前馈控制和渐近跟踪控制的两自由度控制器。我们使用排定的控制结构来应对内燃机的切换动力特性,同时开始穿越粘滞,曲柄和燃烧。该控制方案从用于发动机无间断的基于转矩的控制切换到用于跟踪参考发动机速度轨迹的基于速度的控制。我们通过有意义的仿真来说明控制方案的性能。

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