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Data-driven algorithms for engine friction estimation

机译:数据驱动的发动机摩擦估计算法

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摘要

Errors in the estimation of friction torque in modern spark ignition automotive engines necessitate the development of real-time algorithms for adaptation of the friction torque. Friction torque in the engine control unit is presented as a look-up table with two input variables (the engine speed and indicated engine torque). The algorithms proposed in this paper estimate the engine friction torque via the crankshaft speed fluctuations at the fuel cut-off state and at idle. A computationally efficient filtering algorithm for reconstruction of the first harmonic of a periodic signal is used to recover an amplitude which corresponds to engine events from the noise-contaminated engine speed measurements at the fuel cut-off state. The values of the friction torque at the nodes of the look-up table are updated, when new measured data of the friction torque are available. New data-driven algorithms which are based on a stepwise regression method are developed for adaptation of look-up tables. The algorithms are verified by using a spark ignition six-cylinder prototype engine.
机译:在现代火花点火汽车发动机中,在估计摩擦扭矩时存在误差,因此需要开发实时算法以适应摩擦扭矩。发动机控制单元中的摩擦扭矩以带有两个输入变量(发动机转速和指示的发动机扭矩)的查找表的形式显示。本文提出的算法通过燃油切断状态和怠速时的曲轴转速波动来估计发动机摩擦扭矩。用于重构周期性信号的一次谐波的计算有效的滤波算法被用于从燃料截止状态的噪声污染的发动机转速测量结果中恢复与发动机事件相对应的振幅。当可获得新的摩擦扭矩测量数据时,将更新查找表节点上的摩擦扭矩值。开发了基于逐步回归方法的新数据驱动算法,以适应查询表。通过使用火花点火六缸原型发动机验证了算法。

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