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A Trajectory Planning-Based Energy-Optimal Method for an EMVT System

机译:基于轨迹规划的EMVT系统能量最优方法

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摘要

In this paper, a trajectory planning-based energy-optimal method is proposed to reduce the energy consumption of novel electromagnetic valve train (EMVT). Firstly, an EMVT optimization model based on state equation was established. Then, the Gauss pseudospectral method (GPM) was used to plan energy-optimal trajectory. And a robust feedforward-feedback tracking controller based on inverse system method is proposed to track the energy-optimal trajectory. In order to verify the effectiveness of the energy-optimal trajectory, a test bench was established. Finally, co-simulations based on MATLAB Simulink and AVL Boost were carried out to illustrate the effect of energy-optimal trajectories on engine performance. Experimental results show that the robust tracking controller can achieve good position tracking performance. And these energy-optimal trajectories can save up to 40% of the energy consumption compared with the conventional camshaft valve trajectories.
机译:本文提出了一种基于轨迹规划的能量最优方法,以减少新型电磁阀门列车的能耗(EMVT)。 首先,建立了基于状态方程的EMVT优化模型。 然后,使用高斯假谱法(GPM)来规划能量最佳轨迹。 提出了一种基于逆系统方法的鲁棒前馈 - 反馈跟踪控制器,以跟踪能量最佳轨迹。 为了验证能量最优轨迹的有效性,建立了测试台。 最后,进行了基于MATLAB Simulink和AVL提升的共模,以说明能量最优轨迹对发动机性能的影响。 实验结果表明,稳健的跟踪控制器可以实现良好的位置跟踪性能。 与传统的凸轮轴阀轨迹相比,这些能量最优轨迹可以节省高达40%的能量消耗。

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