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Optimal powertrain control of a heavy-duty vehicle under varying speed requirements

机译:变速要求下重型车辆的最优动力总成控制

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Reducing the fuel consumption is a major issue in the vehicle industry. In this paper, it is done by formulating a driving mission of a heavy-duty truck as an optimal control problem and solving it using dynamic programming. The vehicle model includes an engine and a gearbox with parameters based on measurements in test cells. The dynamic programming algorithm is solved by considering four specific types of transitions: transitions between the same gear, coasting in neutral gear, coasting with a gear engaged with no fuel injection and transitions involving gear changes. Simulations are performed on a driving cycle commonly used for testing distribution type of driving. In order to make sure that the truck does not deviate too much from a normal way of driving, restrictions on maximum and minimum allowed velocities are imposed based on statistics from real traffic data. The simulations show that 12.7 % fuel can be saved without increasing the trip time by allowing the truck to engage neutral gear and make small deviations from the reference trajectory.
机译:减少燃料消耗是汽车工业中的主要问题。本文通过将重型卡车的驾驶任务表述为最优控制问题并使用动态规划来解决这一问题来完成。车辆模型包括发动机和变速箱,变速箱的参数基于测试单元中的测量值。通过考虑四种特定类型的过渡来解决动态编程算法:同一个齿轮之间的过渡,空档中的惯性滑行,无燃料喷射的齿轮中的惯性滑行以及涉及齿轮变化的过渡。在通常用于测试驾驶分配类型的驾驶循环上执行模拟。为了确保卡车不会偏离正常驾驶方式,根据实际交通数据的统计数据对最大和最小允许速度施加了限制。仿真显示,通过允许卡车接合空档并与参考轨迹有微小偏差,可以节省12.7%的燃油,而不会增加行程时间。

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