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A Novel Singular Perturbation Technique for Model-Based Control of Cold Start Hydrocarbon Emission

机译:一种新型奇异性扰动技术,用于模型的冷启动碳氢化合物排放控制

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High hydrocarbon (HC) emission during a cold start still remains one of the major emission control challenges for spark ignition (SI) engines in spite of about three decades of research in this area. This paper proposes a cold start HC emission control strategy based on a reduced order modeling technique. A novel singular perturbation approximation (SPA) technique, based on the balanced realization principle, is developed for a nonlinear experimentally validated cold start emission model. The SPA reduced model is then utilized in the design of a model-based sliding mode controller (SMC). The controller targets to reduce cumulative tailpipe HC emission using a combination of fuel injection, spark timing, and air throttle/idle speed controls. The results from the designed multi-input multi-output (MIMO) reduced order SMC are compared with those from a full order SMC. The results show the reduced SMC outperforms the full order SMC by reducing both engine-out and tailpipe HC emission. This improved performance is caused by setting an optimum priority among the control inputs through the incorporation of SPA that evaluates the significance of the control variables/states on HC emission. The presented SPA approach can be applied for different automotive control applications that face the challenge of how to set the priority among different control actuators which often have conflicting impacts on desired control targets.
机译:在冷启动期间的高碳氢化合物(HC)排放仍然是Spark点火(Si)发动机的主要排放控制挑战之一,尽管该领域约三十年的研究。本文提出了一种基于降低阶阶型建模技术的冷启动HC排放控制策略。基于平衡实现原理,开发了一种新颖的奇异扰动近似(SPA)技术,用于非线性实验验证的冷启动发射模型。然后利用SPA减小模型在基于模型的滑动模式控制器(SMC)的设计中。控制器靶向使用燃料喷射,火花正时和空气节流速度控制的组合减少累积尾管HC发射。设计的多输入多输出(MIMO)减少订单SMC的结果与来自完整顺序SMC的结果进行了比较。结果表明,通过减少发动机输出和尾管HC发射,减少的SMC优于全阶SMC。这种改进的性能是通过在控制输入中的最佳优先级通过掺入SPA来引起的,该SPA评估控制变量/状态对HC发射的重要性。所提出的SPA方法可以应用于面对如何在不同控制执行器中设置优先级的挑战的不同汽车控制应用程序,这通常对所需的控制目标产生冲突。

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