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Adaptive Observer for Joint Estimation of Oxygen Fractions and Blend Level in Biodiesel Fueled Engines

机译:用于联合估算生物柴油燃料发动机中的氧含量和混合气含量的自适应观测器

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摘要

In this paper, a dynamic oxygen fraction model for a biodiesel-compatible engine with a dual-loop exhaust gas recirculation (EGR) system is developed. When oxygenated fuel is applied in an engine, the intake manifold oxygen fraction, which is an important factor for both combustion and emissions, can be chosen as a new reference for evaluating the equivalent EGR level instead of EGR ratio. Based on this model, an adaptive observer is designed, and it is able to simultaneously estimate the oxygen fraction states and unknown fuel blend level. The adaptive observer introduced here is advantageous for its simple convergence condition and its efficient implementation. The analysis of the observer's convergence and robustness is detailed. The performance of the observer is validated by the simulation and experimental results. The difference of intake oxygen fractions between pure diesel (B0) and pure soybean biodiesel (B100) are studied. The adaptive observer is expected to be valuable for adaptive control of the combustion and emissions of biodiesel-compatible engines.
机译:在本文中,建立了具有双回路废气再循环(EGR)系统的生物柴油兼容发动机的动态氧分数模型。当将含氧燃料应用于发动机时,进气歧管中的氧气分数是燃烧和排放的重要因素,可以选择它作为评估等效EGR水平而不是EGR比率的新参考。基于此模型,设计了一个自适应观测器,它能够同时估计氧分数状态和未知的燃料混合水平。这里介绍的自适应观察器由于其简单的收敛条件和有效的实现而具有优势。详细分析了观察者的收敛性和鲁棒性。仿真器和实验结果验证了观测器的性能。研究了纯柴油(B0)和纯大豆生物柴油(B100)之间进气氧分数的差异。自适应观察者有望对生物柴油兼容发动机的燃烧和排放的自适应控制产生价值。

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