基于非线性观测器的气道燃油喷射Wankel发动机空燃比控制

Anthony Siming Chen, G. Herrmann, J. Na, M. Turner, Giovanni Vorraro, C. Brace
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引用次数: 4

摘要

自20世纪70年代以来,随着全球排放法规的严格,万克尔发动机的使用受到了严重限制。进气道燃油喷射(PFI)引起的燃油坑和燃烧室之间的泄漏是效率损失和排放的重要来源。对于生产中的大多数火花点火发动机,排放在很大程度上取决于空燃比(AFR)控制器与三元催化(TWC)转化器的配合。本文提出了一种基于观测器的通用AFR控制框架,以解决万克尔发动机的高非线性问题,从而提高燃油经济性和排放。将未知参数作为增强的发动机状态,设计了一种扩展卡尔曼滤波器,仅使用质量空气流量(MAF)和lambda传感器来估计燃油池动态。采用新颖的观测器技术对复杂的非线性充气动力学进行了集总和估计。将新提出的未知输入观测器与脏微分观测器进行比较,并将其应用于反馈AFR控制设计中。基于标定的基准发动机模型的对比仿真表明,所提出的控制方法可以加快瞬态响应速度,并将AFR调节到化学计量值附近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Observer-Based Air-Fuel Ratio Control for Port Fuel Injected Wankel Engines
The use of Wankel engines has been severely limited as the emission regulations get stringent around the world since the 1970s. The fuel puddles due to port fuel injection (PFI) and the leakage between combustion chambers are significant sources of efficiency loss and emissions. For most spark ignition engines in production, the emission strongly depends on the air-fuel ratio (AFR) controller in cooperation with a three-way catalytic (TWC) converter. This paper presents a generic observer-based AFR control framework to deal with the high nonlinearities of Wankel engines so as to improve the fuel economy and emissions. By taking the unknown parameters as augmented engine states, an extended Kalman filter is designed to estimate the fuel puddle dynamics using only mass air flow (MAF) and lambda sensors. The complex nonlinear air-filling dynamics are lumped together and estimated using novel observer techniques. A newly proposed unknown input observer is compared with a dirty differentiation observer and then employed in the feedback AFR control design. Comparative simulations based on a calibrated benchmark engine model show that the proposed control can speed up the transient response and regulate the AFR around the stoichiometric value.
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