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Design and Robustness Analysis of Discrete Observers for Diesel Engine In-Cylinder Oxygen Mass Fraction Cycle-by-Cycle Estimation

机译:柴油机缸内氧气质量分数离散估计的离散观测器设计和鲁棒性分析

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This paper presents three discrete observer designs for cycle-by-cycle estimation of the in-cylinder oxygen mass fraction at the intake valve closing (IVC) on diesel engines equipped with exhaust gas recirculation systems. These observers can provide critical in-cylinder condition oxygen fraction information that is useful for control of combustion, in particular advanced combustion modes on a cycle-by-cycle basis. The observers were designed based on Lyapunov analysis and linear matrix inequality techniques. By input-to-state stability analysis, robust properties of the three observers were revealed. Simulations using a high fidelity, computational, GT-Power engine model exhibited that the observers can effectively estimate the in-cylinder oxygen mass fraction at IVC on a cycle-by-cycle basis at both steady-state and transient operations. In addition, comparisons were made to evaluate the observers' robustness against measurement and parametric uncertainties/inaccuracies, such as volumetric efficiency uncertainty, exhaust pressure sensor uncertainty, and temperature sensor dynamics. Experimental results from a medium-duty diesel engine were provided to show the effectiveness of the observers and to validate the in-cylinder oxygen fraction estimation in an indirect and innovative way by utilizing the measured cylinder pressure signals.
机译:本文介绍了三种离散的观测器设计,用于逐周期估算配备排气再循环系统的柴油发动机进气门关闭(IVC)时的缸内氧气质量分数。这些观察者可以提供关键的缸内条件氧气分数信息,这些信息可用于控制燃烧,尤其是逐周期地控制先进的燃烧模式。观察者是根据Lyapunov分析和线性矩阵不等式技术设计的。通过输入到状态的稳定性分析,揭示了三个观察者的鲁棒性。使用高保真,计算能力的GT-Power发动机模型进行的仿真显示,观察者可以在稳态和瞬态运行的逐周期基础上,有效地估算IVC处的缸内氧气质量分数。此外,还进行了比较,以评估观察者针对测量和参数不确定性/不准确性(例如体积效率不确定性,排气压力传感器不确定性和温度传感器动态)的鲁棒性。提供了中型柴油机的实验结果,以证明观察者的有效性,并通过利用测得的气缸压力信号以间接和创新的方式验证气缸内氧气分数的估算。

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