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Parameter Estimation for Physical Based Air Path Models of Turbocharged Diesel Engines - An Experience Based Guidance

机译:涡轮增压柴油机的物理空路模型参数估计 - 基于体验的指导

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Physical-based air path models lead to a sub-structuring of the highly complex engine systems into several interacting submodels of low order. They offer detailed process information, support advanced control system design and allow to significantly reduce the calibration effort. Hence, physical approaches are predestinated to cope with the rise in system complexity and with the increasingly challenging demands concerning air system performance. Whereas the basic model equations are known a general methodology to obtain the model parameters is lacking. The purpose of this paper is to shed light on the identification procedure and to offer the automotive engineer helpful advice to gain well-calibrated simulation models. Analyzing the air path equations, the determining factors on the parameter quality are investigated. Based on the results, sensible modifications of the test bed setup and the measurement strategy are presented. In addition the need for careful data processing is discussed. The comparison of simulation results and measurement data from the engine test bed proves the potential of the developed methodology.
机译:基于物理的空气路径模型导致高度复杂的发动机系统的子结构化为几个低阶的相互作用的子模型。它们提供详细的流程信息,支持先进的控制系统设计,并允许显着降低校准工作。因此,预先测试物理方法以应对系统复杂性的增加,并具有越来越具有挑战性的关于空气系统性能的需求。虽然已知基本模型方程是缺乏获得模型参数的一般方法。本文的目的是在识别程序上阐明光线,并提供汽车工程师有用建议,以获得良好的仿真模型。分析空气路径方程,研究了参数质量上的确定因素。根据结果​​,提出了测试床设置的明智修改和测量策略。此外,还讨论了对仔细数据处理的需求。仿真结果和来自发动机试验床的测量数据的比较证明了开发方法的潜力。

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