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Model predictive controller with average emissions constraints for diesel airpath

机译:具有平均排放限制的柴油机风道模型预测控制器

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摘要

Diesel airpath controllers are required to deliver good tracking performance whilst satisfying operational constraints and physical limitations of the actuators. Due to explicit constraint handling capabilities, model predictive controllers (MPC) have been successfully deployed in diesel airpath applications. Previous MPC implementations have considered instantaneous constraints on engine-out emissions in order to meet legislated emissions regulations. However, the emissions standards are specified over a drive cycle, and hence, can be satisfied on average rather than just instantaneously, potentially allowing the controller to exploit the trade-off between emissions and fuel economy. In this work, an MPC is formulated to maximise the fuel efficiency whilst tracking boost pressure and exhaust gas recirculation (EGR) rate references, and in the face of uncertainties, adhering to the input, safety constraints and constraints on emissions averaged over some finite time period. The tracking performance and satisfaction of average emissions constraints using the proposed controller are demonstrated through an experimental study considering the new European drive cycle.
机译:柴油气路控制器需要提供良好的跟踪性能,同时还要满足执行器的操作限制和物理限制。由于具有明确的约束处理能力,模型预测控制器(MPC)已成功部署在柴油机航路应用中。以前的MPC实施方案已经考虑了对发动机输出废气的瞬时限制,以便满足立法的废气排放法规。但是,排放标准是在一个驾驶循环中指定的,因此可以平均地满足要求,而不仅仅是瞬时满足要求,这可能会使控制器在排放和燃油经济性之间进行权衡取舍。在这项工作中,制定了MPC以最大限度地提高燃油效率,同时跟踪增压压力和废气再循环(EGR)速率参考,并且面对不确定性,坚持输入,安全约束和在一定时间内平均排放的约束期。考虑到新的欧洲行驶周期,通过实验研究证明了使用建议的控制器的跟踪性能和对平均排放约束的满足。

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