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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Identification and air-fuel ratio control of a spark ignition engine
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Identification and air-fuel ratio control of a spark ignition engine

机译:火花点火发动机的识别和空燃比控制

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摘要

Accurate control of the air-fuel ratio in a spark-ignition engine is critical to satisfying future federal and California emissions regulations. The goal of this research is to explore the use of adaptive control as a means of precisely controlling the air-fuel ratio. A control-oriented, physics-based engine model, in which the sampling rate is based on crank-angle instead of time, has been utilized to construct a feedforward/feedback control scheme to regulate air-fuel ratio. The derived control law, however, requires the values of time constants, delay times, and other model parameters that must be experimentally determined. Since these parameters can possibly change over time, a method for estimating them online is preferred. A nonlinear least squares identification technique is used to accurately determine the model parameters using normal engine operating data. These parameter values are then employed in an estimator based controller to demonstrate cycle-to-cycle air-fuel ratio regulation on a single-cylinder laboratory engine (CFR) during various throttle transients.
机译:火花点火发动机中空燃比的精确控制对于满足未来的联邦和加利福尼亚排放法规至关重要。这项研究的目的是探索自适应控制作为精确控制空燃比的一种手段。一种基于控制的,基于物理的发动机模型(其中采样率基于曲轴转角而不是时间)已用于构建前馈/反馈控制方案,以调节空燃比。但是,导出的控制定律需要时间常数,延迟时间和其他必须通过实验确定的模型参数的值。由于这些参数可能会随时间变化,因此首选在线估算它们的方法。非线性最小二乘识别技术用于使用正常发动机运行数据准确确定模型参数。然后,将这些参数值用于基于估算器的控制器中,以演示在各种节气门瞬变期间对单缸实验室发动机(CFR)进行的循环空燃比调节。

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