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Modeling and online parameter estimation of intake manifold in gasoline engines using sliding mode observer

机译:基于滑模观测器的汽油发动机进气歧管建模与在线参数估计

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Model based control of automotive engines for fuel economy and pollution minimization depends on accuracy of models used. A number of mathematical models of automotive engine processes are available for this purpose but critical model parameters are difficult to obtain and generalize. This paper presents a novel method of online estimation of discharge coefficient of throttle body at the intake manifold of gasoline engines. The discharge coefficient is taken to be a varying parameter. Air mass flow across the throttle body is a critical variable in maintaining a closer to stoichiometric air fuel ratio; which is necessary to minimize the pollution contents in exhaust gases. The estimation method is based on sliding mode technique. A classical first Sliding mode observer is designed to estimate intake manifold pressure and the model uncertainty arising from the uncertain and time varying discharge coefficient is compensated by the discontinuity/switching signal of sliding mode observer. This discontinuity is used to compute coefficient of discharge as a time varying signal. The discharge coefficient is used to tune/correct the intake manifold model to engine measurements. The resulting model shows a very good agreement with engine measurements in steady as well s transient state. The stability of the observer is shown by Lyapunov direct method and the validity of the online estimation is successfully demonstrated by experimental results. OBD-II (On Board Diagnostic revision II) based sensor data acquisition from the ECU (Electronic Control Unit) of a production model vehicle is used. The devised algorithm is simple enough to be designed and implemented in a production environment. The online estimation of parameter can also be used for engine fault diagnosis work.
机译:用于燃油经济性和污染最小化的基于模型的汽车发动机控制取决于所用模型的准确性。许多汽车发动机过程的数学模型可用于此目的,但是关键的模型参数很难获得和概括。本文提出了一种在线估计汽油机进气歧管节气门体排放系数的新方法。放电系数被认为是变化的参数。穿过节气门阀体的空气质量流量是维持更接近化学计量空燃比的关键变量。这对于最小化废气中的污染含量是必要的。估计方法基于滑模技术。设计经典的第一滑模观察器来估计进气歧管压力,并且由于滑模观察器的间断性/切换信号而补偿了由于不确定性和随时间变化的排放系数而引起的模型不确定性。该不连续性用于计算放电系数作为时变信号。排放系数用于调整/校正进气歧管模型以进行发动机测量。所得模型显示出与稳态以及瞬态状态下的发动机测量值非常吻合。用Lyapunov直接方法证明了观测器的稳定性,实验结果证明了在线估计的有效性。使用从生产模型车辆的ECU(电子控制单元)获取基于OBD-II(车载诊断版本II)的传感器数据。所设计的算法非常简单,可以在生产环境中进行设计和实现。参数的在线估计也可以用于发动机故障诊断工作。

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