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Parameter Identification, Estimation, and Dynamometer Validation of the Nonlinear Dynamics of an Automotive Spark-Ignition Engine

机译:汽车火花点火发动机非线性动力学的参数辨识,估计和测力计验证

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摘要

The identification is described of a nonlinear mathematical model of a modern four-cylinder four-stroke spark-ignition automotive engine for idle-speed control applications. The primary outputs are engine speed and inlet-manifold pressure, and the primary inputs are mass air/fuel ration, spark timing, air bleed valve duty cycle, and disturbance torque, the model can be used for simulating and predicting the dynamic response of the engine system for control algorithm development as a tool to evaluate various engine control concepts. The nonlinear mathematical engine model is obtained using an assumed nonlinear model structure, and a sequential least squares identification algorithm is used to estimate the model parameters. The model formulation, which is based on nonlinear continuous differential equations, consists of four state variables with 15 parameters to represent the engine dynamics. The model contains representations of the idle air bypass valve, manifold plenum, engine-pumping phenomena, brake output torque, and rotational dynamics. The model structure and identified parameter set are validated using experimental data from an engine in an electric dynamometer. The results indicate the suitability of the model structure and nonlinear identification technique for general engine idle-speed control model applications in both off-line and on-line implementations.
机译:该识别描述了用于怠速控制应用的现代四缸四冲程火花点火汽车发动机的非线性数学模型。主要输出为发动机转速和进气歧管压力,主要输入为空气质量/燃料定量,火花正时,放气阀占空比和扰动扭矩,该模型可用于模拟和预测发动机的动态响应。发动机系统,用于控制算法开发,作为评估各种发动机控制概念的工具。使用假定的非线性模型结构获得非线性数学引擎模型,并使用顺序最小二乘识别算法估计模型参数。基于非线性连续微分方程的模型公式由四个具有15个参数的状态变量组成,这些变量表示发动机动力学。该模型包含怠速空气旁通阀,歧管增压室,发动机泵现象,制动输出扭矩和旋转动力学的表示。使用电动测功机中发动机的实验数据验证模型结构和识别的参数集。结果表明,该模型结构和非线性识别技术适用于离线和在线实施中的通用发动机怠速控制模型。

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