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首页> 外文期刊>International Journal of Control >A model-based gain scheduling approach for controlling the common-rail system for GDI engines
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A model-based gain scheduling approach for controlling the common-rail system for GDI engines

机译:用于控制GDI发动机共轨系统的基于模型的增益调度方法

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摘要

The progressive reduction in vehicle emission requirements have forced the automotive industry to invest in research for developing alternative and more efficient control strategies. All control features and resources are permanently active in an electronic control unit (ECU), ensuring the best performance with respect to emissions, fuel economy, driveability and diagnostics, independently from engine working point. In this article, a considerable step forward has been achieved by the common-rail technology which has made possible to vary the injection pressure over the entire engine speed range. As a consequence, the injection of a fixed amount of fuel is more precise and multiple injections in a combustion cycle can be made. In this article, a novel gain scheduling pressure controller for gasoline direct injection (GDI) engine is designed to stabilise the mean fuel pressure into the rail and to track demanded pressure trajectories. By exploiting a simple control-oriented model describing the mean pressure dynamics in the rail, the control structure turns to be simple enough to be effectively implemented in commercial ECUs. Experimental results in a wide range of operating points confirm the effectiveness of the proposed control method to tame efficiently the mean value pressure dynamics of the plant showing a good accuracy and robustness with respect to unavoidable parameters uncertainties, unmodelled dynamics, and hidden coupling terms.
机译:车辆排放要求的逐步降低已迫使汽车工业投资于研究,以开发替代的和更有效的控制策略。所有控制功能和资源均在电子控制单元(ECU)中永久激活,从而确保了与发动机工作点无关的最佳排放,燃油经济性,可驾驶性和诊断性能。在本文中,共轨技术已实现了相当大的进步,共轨技术已使在整个发动机转速范围内改变喷射压力成为可能。结果,更精确地喷射固定量的燃料,并且可以在燃烧循环中进行多次喷射。在本文中,设计了一种新颖的汽油直喷(GDI)发动机增益调度压力控制器,以稳定进入导轨的平均燃料压力并跟踪所需的压力轨迹。通过利用描述导轨中平均压力动态特性的面向控制的简单模型,控制结构变得足够简单,可以在商用ECU中有效实现。在广泛的工作点上的实验结果证实了所提出的控制方法有效地控制设备的平均值压力动力学的有效性,该动力学对于不可避免的参数不确定性,未建模的动力学和隐藏的耦合项表现出良好的准确性和鲁棒性。

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