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Retard to the Limit: Closed-Loop COVIMEP Control for Aggressive Exhaust Heating

机译:延至极限:积极排气加热的闭环COVIMEP控制

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During cold-starts, diesel engines equipped with aftertreatment systems typically use combustion phasing retard to increase exhaust gas enthalpy to hasten catalyst light-off, resulting in lower tailpipe emissions. Although later combustion phasing can help achieve faster catalyst light-off, combustion variability increases which can physically manifest as vibration and erratic engine behavior. To achieve faster catalyst light-off while remaining within combustion variability constraints, the premise of closed-loop control of Coefficient of Variation of IMEP (COVIMEP) to a target value using feedback from an in-cylinder pressure sensor has been explored. COVIMEP controllers have been designed using a model and validated via simulation and experiment at steady-state. The simulation and experimental results indicate that closed-loop COVIMEP control is a viable technique for retarding combustion phasing to the combustion variability limit at steady-state conditions.
机译:在冷启动期间,配备了后处理系统的柴油机通常使用燃烧定相延迟来增加废气的焓以加速催化剂的起燃,从而降低尾气排放。尽管以后的燃烧定相可以帮助实现更快的催化剂起燃,但是燃烧的可变性增加,这在物理上表现为振动和发动机行为不稳定。为了在保持燃烧可变性约束的同时实现更快的催化剂起燃,已经探索了使用缸内压力传感器的反馈将IMEP变化系数(COVIMEP)调节到目标值的闭环控制的前提。 COVIMEP控制器已使用模型进行设计,并通过稳态下的仿真和实验进行了验证。仿真和实验结果表明,闭环COVIMEP控制是在稳态条件下将燃烧相位延迟到燃烧可变性极限的可行技术。

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