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Transient Lean Burn Air-fuel Ratio Control using Input Shaping Method combined with Linear Parameter-Varying Control

机译:使用输入整形方法结合线性参数变化控制的瞬态稀燃空燃比控制

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Transient air-fuel ratio control for lean burn engines is critical to achieve desired fuel economy and meet federal emission regulations. Unlike conventional SI engines, lean burn engines are no longer operating in a narrow band around stoichiometry resulting in a very challenging air-fuel ratio tracking problem. An approach to combine an input shaping method together with a linear parameter varying (LPV) feedback controller is proposed to solve the transient air-fuel ratio tracking problem. In [1], a feedback LPV air-fuel ratio controller has been designed to regulate the air-fuel ratio at steady state engine operating conditions, reduce the variability of the closed-loop system, reject disturbances and guarantee robustness and stability. In this paper, an input shaping method is proposed to reduce the cost of feedback, and thereby enhance the air-fuel ratio tracking performance during engine transient operations. The prefilter is designed based on the closed-loop dynamics resulting from the LPV design. A systematic input shaping prefilter design process is developed. The designed prefilter successfully extends the closed-loop air-fuel ratio tracking bandwidth. Simulation results are used to demonstrate the effectiveness of the input shaping prefilter. Moreover, the designed prefilter is structurally simple and computationally efficient.
机译:瘦燃烧发动机的瞬态空燃比控制对于实现所需的燃料经济性并满足联邦排放法规至关重要。与传统的SI发动机不同,贫燃烧发动机不再在化学计量周围的窄带中操作,从而产生非常具有挑战性的空燃比跟踪问题。提出了一种与线性参数变化(LPV)反馈控制器组合在一起结合输入整形方法的方法,以解决瞬态空燃比跟踪问题。在[1]中,反馈LPV空燃比控制器设计用于调节稳态发动机运行条件下的空燃比,降低闭环系统的可变性,抑制扰动并保证鲁棒性和稳定性。在本文中,提出了一种输入成形方法来降低反馈成本,从而提高发动机瞬态操作期间的空燃比跟踪性能。 Precter基于LPV设计产生的闭环动态。开发了系统输入整形预流设计过程。设计的预滤器成功地扩展了闭环空燃比跟踪带宽。仿真结果用于展示输入整形预滤器的有效性。此外,设计的预滤器在结构上简单且计算上有效。

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