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Torque coordination of clutch, engine and motor during power transition for a hybrid electric bus

机译:混合动力电动客车动力转换期间离合器,发动机和电动机的扭矩协调

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Ideal running performance requires that series-parallel hybrid electric vehicles smoothly transite between series and parallel operation modes. Clutches are widely applied to series-parallel hybrid electric vehicles to connect or disconnect powertrain components. Due to discontinuous nonlinear effect of clutch friction characteristics, smooth transition with little frictional dissipation is difficultly achieved. Hence, it is desirable to take friction discontinuity into consideration for improving the mode transition performance of hybrid electric vehicles. In this paper, a model reference adaptive control scheme based on hyperstability theory is developed to coordinate the torques of clutch, engine and motor for a post-transmission configured hybrid electric bus. It is worth emphasizing that the clutch is controlled to engage quickly and smoothly by a small frictional torque, which contributes directly to small jerk and little frictional dissipation. Results of simulations and experiments demonstrate that both vehicle jerk and frictional dissipation are decreased greatly compared to conventional operation. The effectiveness of the proposed adaptive control scheme is validated.
机译:理想的行驶性能要求串联-并联混合动力电动汽车在串联和并联运行模式之间平稳过渡。离合器广泛应用于串联-并联混合动力电动汽车,以连接或断开动力总成组件。由于离合器摩擦特性的不连续非线性效应,很难实现具有很小摩擦耗散的平稳过渡。因此,期望考虑摩擦不连续性以改善混合动力电动车辆的模式转换性能。本文提出了一种基于超稳定性理论的模型参考自适应控制方案,以协调变速器后配置混合动力客车的离合器,发动机和电动机的扭矩。值得强调的是,离合器是通过较小的摩擦扭矩来控制的,以使其快速,平稳地接合,这直接有助于减小冲击力和减小摩擦耗散。仿真和实验结果表明,与传统操作相比,车辆的冲击和摩擦耗散都大大降低了。所提出的自适应控制方案的有效性得到了验证。

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