首页> 外文会议>DSCC2011;ASME dynamic systems and control conference;Bath/ASME symposium on fluid power and motion control >OPTIMAL LQ TRANSIENT AIR-TO-FUEL RATIO CONTROL OF AN INTERNAL COMBUSTION ENGINE
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OPTIMAL LQ TRANSIENT AIR-TO-FUEL RATIO CONTROL OF AN INTERNAL COMBUSTION ENGINE

机译:内燃发动机的最优LQ瞬态空燃比控制

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摘要

Most modern spark ignited (SI) internal combustion engines maintain their air-to-fuel ratio (AFR) at a desired level to maximize the three-way catalyst conversion efficiency and to extend its life. However, maintaining the engine AFR during its transient operation is quite challenging due to rapid changes of driver demands. Conventional transient AFR control is based upon the inverse dynamics of the engine port-fuel-injection well-wetting dynamics and the measured mass air flow rate. This paper develops a dynamic linear quadratic (LQ) tracking controller to regulate the AFR using a control oriented model of the wall wetting dynamics of a port fuel injector (PFI) and estimated transport delays of the airflow travel and throttle dynamics. The LQ tracking controller is designed to optimally track the measured airflow through the throttle during engine transients over a given time interval. The performance of the optimal LQ tracking controller was compared with the conventional inverse fueling dynamics through simulations and showed improvement over the baseline controller.
机译:大多数现代火花被点燃(Si)内燃机以所需的水平保持其空气 - 燃料比(AFR),以最大化三元催化剂转化效率并延长其寿命。然而,由于驾驶员需求的快速变化,在其瞬态操作期间保持发动机AFR非常具有挑战性。传统的瞬态AFR控制基于发动机端口 - 燃料喷射井润湿动力学的逆动力学和测量的质量空气流速。本文开发了一种动态线性二次(LQ)跟踪控制器,用于使用端口燃料喷射器(PFI)的壁润湿动力学的控制定向模型来调节AFR,以及气流行程和节流动力学的估计运输延迟。 LQ跟踪控制器旨在通过给定的时间间隔在发动机瞬态期间通过节流器最佳地跟踪测量的气流。将最佳LQ跟踪控制器的性能与通过模拟的传统的逆加油动力学进行了比较,并在基线控制器上显示出改进。

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