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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Automotive Transmission Clutch Fill Control Using a Customized Dynamic Programming Method
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Automotive Transmission Clutch Fill Control Using a Customized Dynamic Programming Method

机译:使用定制动态编程方法的汽车变速箱离合器填充控制

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Clutch to clutch shift control technology, which is the key enabler for a compact and low cost transmission design, is important for both automatic and hybrid transmissions. To ensure a smooth clutch to clutch shift, precise synchronization between the oncoming and off-going clutches is critical. This further requires the on-coming clutch to be filled and ready for engagement at the predetermined time. Due to the compact design, currently there is no pressure sensor inside the clutch chamber, and therefore the clutch fill can only be controlled in an open loop fashion. The traditional clutch fill approach, by which the clutch fill input pressure command is manually calibrated, has a couple of limitations. First, the pressure profile is not optimized to reduce the peak flow demand during clutch fill. Moreover, it is not systematically designed to account for uncertainties in the system, such as variations of solenoid valve delay and parameters of the clutch assembly. In this paper, we present a systematic approach to evaluate the clutch fill dynamics and synthesize the optimal pressure profile. First, a clutch fill dynamic model, which captures the key dynamics in the clutch fill process, is constructed and analyzed. Second, the applicability of the conventional numerical dynamic programming (DP) method to the clutch fill control problem, which has a stiff dynamic model, is explored and shown to be ineffective. Thus, we proposed a customized DP method to obtain the optimal and robust pressure profile subject to specified constraints. The customized DP method not only reduces the computational burden significantly, but also improves the accuracy of the result by eliminating the interpolation errors. To validate the proposed method, a transmission clutch fixture has been designed and built in the laboratory. Both simulation and experimental results demonstrate that the proposed customized DP approach is effective, efficient and robust for solving the clutch fill optimal control problem.
机译:离合器到离合器的变速控制技术是紧凑和低成本变速器设计的关键推动力,对于自动变速器和混合动力变速器都至关重要。为了确保离合器到离合器的平稳换挡,即将到来的离合器和即将离开的离合器之间的精确同步至关重要。这进一步要求即将来临的离合器被填充并准备在预定时间接合。由于紧凑的设计,目前离合器腔内没有压力传感器,因此只能以开环方式控制离合器的填充。传统的离合器填充方法有一些局限性,通过该方法可以手动校准离合器填充输入压力命令。首先,没有优化压力分布以降低离合器加注期间的峰值流量需求。而且,它没有系统地设计来解决系统中的不确定性,例如电磁阀延迟的变化和离合器组件的参数。在本文中,我们提出了一种系统的方法来评估离合器填充动力学并合成最佳压力曲线。首先,构建并分析离合器填充动态模型,该模型捕获了离合器填充过程中的关键动态。其次,探索了传统的数值动态规划(DP)方法对具有刚性动态模型的离合器填充控制问题的适用性,并证明是无效的。因此,我们提出了一种定制的DP方法来获得受指定约束的最佳且鲁棒的压力曲线。定制的DP方法不仅显着减轻了计算负担,而且通过消除插值误差提高了结果的准确性。为了验证所提出的方法,已在实验室中设计并制造了变速箱离合器夹具。仿真和实验结果均表明,所提出的定制DP方法对于解决离合器填充最优控制问题是有效,高效和鲁棒的。

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