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Model Based Control for Dual EGR System with Intake Throttlein New Generation 1.6 L Diesel Engine

机译:基于模型的Intake Throttlein新一代Bort System的基于模型控制新一代1.6 L柴油发动机

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Honda developed a new generation 1.6 L diesel engine as a part of technologies for high driving performance and good fuel economy. This new engine is equipped on Civic (C Segment, 5 doors), launched as a new European model in 2013. This engine has some technologies achieving both good fuel economy and low emission, and met Euro5 emission regulation. And the Civic achieved CO_2 emission of 94 g/km in NEDC, a reduction of 14.5% in CO_2 emission against the previous diesel engine of Honda. This engine has the dual EGR system composed of HP-EGR and LP-EGR, one of the technologies introduced to increase fuel efficiency. In this paper, some issues for the dual EGR system control and countermeasures for them will be described. In order to control each EGR mass flow, two or more valves (HP-EGR valve, LP-EGR valve and intake throttle) should be regulated cooperatively. So the model based control which is multi input-multi output (MIMO) system is introduced, and operates some valves simultaneously. In the dual EGR system, the ratio of LP-EGR flow and HP-EGR flow should be controlled. So the logic which guarantees minimum differential pressure to LP-EGR was introduced. And then LP-EGR flow indicates lag and dead-time characteristics because LP-EGR passage is very long. In this case HP-EGR which has higher response is compensated, and achieves accurate EGR control. This model based control is used in the rich combustion mode also in order to realize the cooperative control of an intake shutter and HP-EGR valve. Introducing the model based control realizes good control accuracy of EGR flow regardless of the dual EGR using some valves.
机译:本田开发了新一代1.6 L柴油发动机,作为高驾驶性能和良好燃油经济性技术的一部分。这款新发动机在2013年推出了作为新欧洲模型的公民(C段,5门)。该发动机有一些技术实现良好的燃油经济性和低排放,并达到欧元排放监管。和公民在NEDC实现了94克/ km的CO_2排放,在本田以前的柴油发动机减少了14.5%的CO_2排放。该发动机具有由HP-EGR和LP-EGR组成的双EGR系统,其中一项技术引入提高燃料效率。在本文中,将描述双EGR系统控制的一些问题和它们的对策。为了控制每个EGR质量流量,应协同调节两个或更多个阀(HP-EGR阀,LP-EGR阀和进气口)。因此,引入了基于模型的控制,该控制是多输入多输出(MIMO)系统,并同时操作一些阀门。在双EGR系统中,应控制LP-EGR流和HP-EGR流的比率。因此,介绍了保证最小差压对LP-EGR的逻辑。然后LP-EGR流表示滞后和死区时间特征,因为LP-EGR通道很长。在这种情况下,补偿具有更高响应的HP-EGR,并实现精确的EGR控制。该基于型号的控制也用于富燃烧模式,以实现进气门和HP-EGR阀的协同控制。介绍基于模型的控制,实现了EGR流的良好控制精度,无论使用一些阀门的双EGR如何。

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