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FUEL DYNAMICS MODEL FOR ENGINE COLDSTART

机译:发动机冷启动的燃油动力学模型

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Different strategies have been used in the past to improve the performance of hydrocarbon emissions controllers in SI engines. One of them relies on the use of the model-based control design scheme, which offers the possibility of automating the controller design-to-implementation phase. It also gives the chance to update the model with a potential reduction in required experiments if physical changes are made to the plant. Under the model-based scheme, an accurate plant model can greatly enhance the development of an effective control systems. In particular, acquiring a correct fuel-dynamics model can be crucial in developing a good hydrocarbon emissions controller for coldstart. During this period, the factory AFR (air-fuel ratio) sensor is not active and the engine experiences an abrupt transient, which makes modeling difficult. In this paper, a model that describes fuel dynamics for coldstart is developed. The model uses mainly two parameters: one of them accounts for the fraction of injected fuel that runs directly into the cylinders and the other represents the time constant of fuel vaporization from the wall-wetting film formed in the intake port. Two discretized versions of the model are evaluated and compared. The parameters are calculated at different intake port temperatures. To implement the proposed model, experiments are carried out using a 4-cylinder SI MPFI combustion engine connected to a Simulink interface with capabilitiesof automatic code generation. Factory controller measurements and other external measurements such as intake port temperature and broadband AFR sensor measurements are used to fit the model parameters. Parameter identification techniques are used to identify the values of the parameters. Both versions of the fuel dynamics model are then tested during coldstart cycles and the results are analyzed.
机译:过去已使用不同的策略来改善SI发动机中碳氢化合物排放控制器的性能。其中之一依赖于基于模型的控制设计方案的使用,这提供了从控制器设计到实现阶段自动化的可能性。如果对工厂进行了物理更改,还可以通过减少所需实验来更新模型的机会。在基于模型的方案下,准确的工厂模型可以大大增强有效控制系统的开发。特别地,获得正确的燃料动力学模型对于开发用于冷启动的良好的碳氢化合物排放控制器至关重要。在此期间,工厂的AFR(空燃比)传感器不处于活动状态,并且发动机经历了突然的瞬变,这使建模变得困难。在本文中,建立了描述冷启动燃料动力学的模型。该模型主要使用两个参数:一个参数说明直接进入气缸的喷射燃料的比例,另一个参数表示从进气口形成的壁湿膜中蒸发燃料的时间常数。对模型的两个离散版本进行了评估和比较。在不同的进气口温度下计算参数。为了实现所提出的模型,使用连接到具有自动代码生成功能的Simulink接口的4缸SI MPFI内燃机进行了实验。工厂控制器测量和其他外部测量(例如进气口温度和宽带AFR传感器测量)用于拟合模型参数。参数识别技术用于识别参数值。然后在冷启动周期中测试两种版本的燃料动力学模型,并对结果进行分析。

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