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Coordinated EGR-Rate Model-Based Controls of Turbocharged Diesel Engines via an Intake Throttle and an EGR Valve

机译:通过进气节流阀和EGR阀协调基于EGR速率模型的基于涡轮增压柴油机的控制

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This paper demonstrates prerequisites and performance of a model based approach for controlling mass air flow (MAF), and consequently exhaust gas recirculation (EGR) fraction, by coordinating the use of the EGR valve and the intake throttle (THR). The proposed approaches use EGR as the main actuator and the intake throttle to serve as an extension of the EGR valve to control EGR rates when EGR actuator saturates. The idea is to consider the EGR and THR as one union. The effective flow area of both actuators combined regulates the EGR rate via the command calculated by the model-based inverse function with the feedback signals. A new approach to create a reliable volumetric efficiency model is proposed in this paper that the impact of intake manifold temperature and the pressure difference between the intake and exhaust gas pressure are taken into account. The proposed volumetric efficiency model shows better and more robust estimation of in-cylinder flow rates compared to that of the traditional volumetric efficiency map.
机译:本文演示的先决条件和用于控制空气质量流量(MAF),因此排气再循环(EGR)分数,通过协调使用EGR阀和进气节流阀(THR)的基于模型的方法的性能。所提出的方法使用EGR作为主致动器和所述进气节气门,作为EGR阀的延伸到控制的EGR率时EGR致动器饱和。我们的想法是要考虑EGR和THR作为一个工会。两个致动器相结合时调节经由由与所述反馈信号基于模型的逆函数计算出的指令的EGR率的有效流动面积。创建可靠的容积效率模型的新方法在本文提出的是进气歧管温度和进气和排气压力之间的压力差的影响被考虑在内。所提出的容积效率模特表演更好,气缸内的流动速率的更稳健的估计相比传统的容积效率地图。

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