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Model-Based Control for Air-Fuel Ratio of Natural Gas Fueled SI Engines

机译:基于模型的天然气空燃比控制Si发动机

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This paper proposes a fast and simple model of a Compressed Natural Gas indirect injection system to predict the system dynamics with high accuracy for different operating conditions. In a retrofit system the CNG Engine Control Unit (ECU) is able to translate the petrol ECU control strategy in CNG operation. The adaptation of the engine to the natural gas type is handled by using the factory engine control strategy embodied in the factory ECU. The ECU monitors the engine through various sensors and controls its operation using a variety of actuators. Because of many input parameters, the control over the engine becomes quite complex. The use of advanced emission control systems makes such process even more complicated. The new Gas Control Unit is used to reprogram the ECU control parameters to correspond with the use of Natural Gas along with the characteristics of the Natural Gas injectors. Since gaseous fuels are not affected by evaporation effects, the intake fuel-air mixing transfer function has very little dynamic effects. The control system has been tested on a set of Air-Fuel ratio dynamic transients measured on a commercial engine, showing good accuracy in predicting the Air/Fuel ratio. Experimental results on an actual engine show high effectiveness of the presented method.
机译:本文提出了一种快速而简单的压缩天然气间接注射系统模型,以预测系统动态,具有高精度,可用于不同的操作条件。在改装系统中,CNG发动机控制单元(ECU)能够在CNG操作中转换汽油ECU控制策略。通过使用工厂ECU中体现的工厂发动机控制策略来处理发动机到天然气型的适应。 ECU通过各种传感器监控发动机,并使用各种执行器控制其操作。由于许多输入参数,对发动机的控制变得非常复杂。使用先进的排放控制系统使得这种过程更加复杂。新的气体控制单元用于重新编程ECU控制参数,与天然气的使用以及天然气喷射器的特性相对应。由于气体燃料不受蒸发效果的影响,因此进气燃料 - 空气混合传递函数具有很小的动态效果。控制系统已经在商业发动机上测量的一组空燃比动态瞬变进行了测试,在预测空气/燃料比方面表现出良好的精度。实验结果对实际发动机显示出呈现的方法高效。

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