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首页> 外文期刊>Journal of Thermal Science and Technology >Enhancement of knocking detection accuracy by an ion-current sensor integrated in the ignition system
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Enhancement of knocking detection accuracy by an ion-current sensor integrated in the ignition system

机译:通过在点火系统中集成的离子电流传感器来提高爆震检测精度

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Abnormal combustion such as pre-ignition and knocking is becoming one of the biggest problems in the latest gasoline engines that have a higher compression ratio and boosting for higher efficiency. An ion-current sensor integrated in an ignition system is used for accurately detecting knocking cycles. First, the problem for accurate knocking detection with an ion-current sensor was clarified in the test engine. The oscillation in the ion-current signal was observed in knocking cycles as is commonly known in the previous research. However, heavy oscillation in the ion-current signal can be observed occasionally even in the small knocking cycles. This phenomenon leads to the misdetection of knocking cycles with the conventional signal-processing method, which defines the oscillation intensity of the change amount in the ion-current signal as a knocking indicator. Second, to solve the problem mentioned above, a new signal-processing method is proposed on the basis of the thermal characteristics of ion-current signals. This method defines the oscillation intensity of the “normalized ion-signal change rate” as a knock indicator in order to suppress the effect of temperature dependency in ion-current signals. Finally, the proposed method was applied to an actual gasoline engine, and the knocking detection performance was evaluated. The method enabled the misdetection of the knocking cycles to be avoided and enhanced the correlation factor with knock intensity compared with the conventional method.
机译:异常燃烧如预点火和爆震是最新汽油发动机中最大的问题之一,具有更高的压缩比和提高效率。在点火系统中集成的离子电流传感器用于精确检测爆震循环。首先,在测试发动机中阐明了具有离子电流传感器的精确敲击检测的问题。在敲击循环中观察到离子电流信号中的振荡,如先前的研究中常见的。然而,即使在小爆震周期中,也可以偶尔观察离子电流信号中的重振荡。这种现象导致突出循环与传统信号处理方法的误报,其定义了作为敲击指示器的离子电流信号中的变化量的振荡强度。其次,为了解决上述问题,基于离子电流信号的热特性提出了一种新的信号处理方法。该方法将“归一化离子信号变化率”的振荡强度定义为爆震指示器,以抑制离子电流信号的温度依赖性的影响。最后,将所提出的方法应用于实际的汽油发动机,并评估爆震检测性能。该方法使爆震循环的误报能够避免,并与常规方法相比,将具有爆震强度的相关因子提高。

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