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Engine Controller using Implicit Fault-avoidance Learning of Control Parameters for Mixed-fuel Combustion

机译:发动机控制器使用隐式故障避免对控制参数进行混合燃料燃烧的避免学习

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摘要

An engine controller for mixed-fuel combustion has been developed that learns the control parameters while implicitly avoiding faults by setting the parameters so that thermal efficiency increases. In explicit fault-avoidance learning, the control parameters are learned while sensing faults such as abnormal combustion, misfiring and combustion fluctuation with sensors. Since the faults that can be detected with sensors can damage the engine, we used the fact that stable combustion is observed when the control parameters are set so that thermal efficiency is increased to develop an engine controller that autonomously determines the control parameters by alternately repeating parameter search and estimation. Application of this controller to an engine system operating on ethanol and hydrogen with the ratio of hydrogen increased in 2.5% increments from 0% to 30% (the engine's limit) resulted in a coefficient of variation in combustion fluctuation of less than 3%, demonstrating that combustion was stable and that faults were implicitly avoided.
机译:已经开发了一种用于混合燃料燃烧的发动机控制器,用于通过设置参数来隐式避免故障,从而实现了控制参数,使得热效率增加。在明确的故障避免学习中,控制参数,同时感应具有传感器的异常燃烧,误兵和燃烧波动等故障。由于可以用传感器检测的故障可能损坏发动机,因此我们使用了当设置控制参数时观察到稳定燃烧,以便增加热效率以开发通过交替重复参数自主地确定控制参数的发动机控制器。搜索和估算。将该控制器应用于在乙醇和氢气上运行的发动机系统,其氢气的比例增加了2.5%的增量从0%至30%(发动机的极限)导致燃烧波动系数小于3%,展示燃烧稳定,隐含避免了故障。

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