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Development of Dynamic Constraint Models for a Model Based Transient Calibration Process

机译:基于模型的瞬态标定过程动态约束模型的开发

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摘要

Model based calibration has gained popularity in recent years as a method to optimize increasingly complex engine systems. However virtually all model based techniques are applied to steady state calibration. Transient calibration is by and large an emerging technology. An important piece of any transient calibration process is the ability to constrain the optimizer to treat the problem as a dynamic one and not as a quasi-static process. The optimized air-handling parameters corresponding to any instant of time must be achievable in a transient sense; this in turn depends on the trajectory of the same parameters over previous time instances. In this work dynamic constraint models have been proposed to translate commanded to actually achieved air-handling parameters. These models enable the optimization to be realistic in a transient sense. The air handling system has been treated as a linear second order system with PD control. Parameters for this second order system have been extracted from real transient data. The model has been shown to be the best choice relative to a list of appropriate candidates such as neural networks and first order models. The selected second order model was used in conjunction with transient emission models to predict emissions over the FTP cycle. It has been shown that emission predictions based on air-handing parameters predicted by the dynamic constraint model do not differ significantly from corresponding emissions based on measured air-handling parameters.
机译:近年来,基于模型的校准作为一种优化日益复杂的发动机系统的方法而受到欢迎。然而,实际上所有基于模型的技术都应用于稳态校准。瞬态校准大体上是新兴技术。任何瞬态校准过程的重要组成部分是约束优化器将问题视为动态问题而不是准静态过程的能力。必须在瞬时意义上实现与任何时刻相对应的优化空气处理参数。这又取决于先前时间实例中相同参数的轨迹。在这项工作中,提出了动态约束模型以将命令转换为实际实现的空气处理参数。这些模型使优化在瞬态意义上成为现实。空气处理系统已被视为带有PD控制的线性二阶系统。该二阶系统的参数已从实际瞬态数据中提取。相对于一系列诸如神经网络和一阶模型之类的合适候选物,模型已被证明是最佳选择。所选的二阶模型与瞬态排放模型结合使用,以预测FTP周期内的排放。已经表明,基于由动态约束模型预测的空气处理参数的排放预测与基于测量的空气处理参数的相应排放没有显着差异。

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