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Experimental-based dynamic calibration of the diesel air-path

机译:基于实验的柴油机的动态校准

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摘要

An experimental study is presented of a novel dynamic calibration methodology applied to the air-path of a Jaguar Land Rover turbocharged diesel engine. The calibration is obtained in a one-shot process solely from data obtained from dynamic dynamometer testing, without any in-vehicle tuning. Although limited here to control of only boost pressure and exhaust gas recirculation rate with constraints on NOx and particle emissions, the methodology has the potential for a complete engine calibration including emission constrained optimisation of fuel consumption. The approach combines state space neural network (SSNN) modelling and optimisation to determine a feedforward Hammerstein-Wiener control map from the synthesised optimal control behaviour. The controller performance was verified by vehicle testing at the Jaguar Land Rover Test Track, Gaydon, UK. The outcome demonstrates a method for systematically obtaining dynamic control calibrations for good driveability and reduced emissions from limited dynamometer testing time without the need for manual tuning.
机译:提出了一种应用于Jaguar Land Rover涡轮增压柴油发动机的小型动态校准方法的实验研究。仅从动态测功机测试中获得的数据中的单次过程中获得校准,而无需任何车载调谐。虽然这里有限地控制升压压力和废气再循环率与NOx和颗粒排放的限制,但该方法具有完整的发动机校准的可能性,包括减排限制燃料消耗的优化。该方法结合了状态空间神经网络(SSNN)建模和优化,以确定来自合成的最佳控制行为的前馈HAMBerstein-Wiener控制图。捷豹路虎试验赛道,英国加德森,捷豹路虎试验赛道验证了控制器性能。结果表明,用于系统地获得动态控制校准的方法,以获得良好的可驱动性,并且在无需手动调谐的情况下从有限的测力计测试时间减少排放。

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