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Air–Fuel Ratio Control of Spark Ignition Engines With Unknown System Dynamics Estimator: Theory and Experiments

机译:具有未知系统动力学估计的火花点火发动机的空燃比控制:理论与实验

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This brief addresses the emission reduction of spark ignition engines by proposing a new control to regulate the air-fuel ratio (AFR) around the ideal value. After revisiting the engine dynamics, the AFR regulation is represented as a tracking control of the injected fuel amount. This allows to take the fuel film dynamics into consideration and simplify the control design. The lumped unknown engine dynamics in the new formulation are online estimated by suggesting a new effective unknown system dynamics estimator. The estimated variable can be superimposed on a commercially configured, well-calibrated gain scheduling like proportional-integral-differential (PID) control to achieve a better AFR response. The salient feature of this proposed control scheme lies in its simplicity and the small number of required measurements, that is, only the air mass flow rate, the pressure and temperature in the intake manifold, and the measured AFR value are used. Practical experiments on a Tata Motors Limited two-cylinder gasoline engine are carried out under a realistic driving cycle. The comparative results show that the proposed control can achieve an improved AFR control response and reduced emissions.
机译:本简要介绍了通过提出新的控制来调节围绕理想值的空燃比(AFR)的新控制来解决火花点火发动机的排放减少。在重新审视发动机动力学之后,AFR调节表示为注入燃料量的跟踪控制。这允许考虑燃料胶片动力学并简化控制设计。通过建议新的有效未知系统动态估计器,在线估计新配方中的集成未知发动机动态。估计变量可以叠加在商业配置的良好校准增益调度等比例积分差分(PID)控制上以实现更好的AFR响应。该提出的控制方案的突出特征在于其简单性和少量所需的测量,即仅使用进气歧管中的空气质量流量,压力和温度,并且使用测量的AFR值。在塔塔电机上的实际实验有限的双缸汽油发动机在现实的驾驶循环下进行。比较结果表明,所提出的控制可以实现改善的AFR控制反应和减少排放。

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