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DECENTRALIZED FEEDBACK CONTROL OF PUMPING LOSSES AND NO_X EMISSIONS IN DIESEL ENGINES

机译:柴油机抽油机损失和NO_X排放的分散反馈控制。

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A novel decentralized control architecture is developed based on a feedback from the pressure difference across the engine which is responsible for the pumping losses and the Exhaust Gas Recirculation (EGR) flow in diesel engines. The controller is supplemented with another feedback loop based on NO_x emissions measurement. Aiming for simple design and tuning, the two control loops are designed and discussed; one manipulates the Variable Geometry Turbine (VGT) actuator and the other manipulates the EGR valve. An experimentally validated mean-value diesel engine model is used to analyze the best pairing of actuators and set points. Emphasis is given to the robustness of this pairing based on gain changes across the entire operating region, since swapping the pairing needs to be avoided. The VGT loop is designed to achieve fast cylinder air charge increase in response to a rapid pedal tip-in by a feedforward term based on the real-time derivative of the desired boost pressure. The EGR loop relies on a feedback measurement from a NO_x sensor and a real-time estimation of cylinder oxygen ratio, X_(cyl). The engine model is used for evaluating the designed controllers over the federal test procedure (FTP) for heavy duty vehicles. Results indicate that the control system meets all targets, namely fast air charge and X_(cyl) control during torque transients, robust NO_x control during steady state operation and controlled pumping losses in all conditions.
机译:基于来自发动机两端的压差的反馈,开发了一种新型的分散控制架构,该反馈负责柴油发动机中的泵送损失和废气再循环(EGR)流量。控制器还具有另一个基于NO_x排放测量值的反馈回路。为了简化设计和调整,设计并讨论了两个控制回路。一个操纵可变几何涡轮(VGT)致动器,另一个操纵EGR阀。经过实验验证的均值柴油发动机模型用于分析执行器和设定点的最佳配对。由于需要避免交换配对,因此基于整个工作区域的增益变化,强调了该配对的鲁棒性。 VGT回路设计为根据所需增压压力的实时导数,通过前馈项响应踏板的快速踩入而实现汽缸充气量的快速增加。 EGR回路依赖于NO_x传感器的反馈测量值和气缸氧气比率X_(cyl)的实时估计。发动机模型用于通过联邦测试程序(FTP)评估重型车辆的设计控制器。结果表明,该控制系统满足了所有目标,即在扭矩瞬变期间实现了快速充气和X_(cyl)控制,在稳态运行期间实现了稳健的NO_x控制以及在所有情况下均控制了泵送损失。

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