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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A new knock event definition for knock detection and control optimization
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A new knock event definition for knock detection and control optimization

机译:爆震检测和控制优化的新爆震事件定义

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Highlights?A method for improving knock detection is proposed.?The method distinguish between combustion and autoignition of the end gas.?The method does not need any calibration effort.?The final definition of knock event allows low-knocking detection.AbstractIn this paper, the knock phenomenon is studied and characterized in the time-frequency domain. From the analysis results, a new knock event definition is proposed, which compares the excitation of the cylinder resonance produced by the autoignition of the end gas to that associated with the combustion. The new definition permits a more consistent differentiation between knocking and not knocking cycles than the classical approach in the literature, thus allowing the improvement of the knock control strategies.The new knock index proposed analyses the frequency spectrum of the pressure signal in two locations, i.e. near the maximum heat release and near the end of combustion, by using the fast Fourier transform and a window function, and it is compared with the classical MAPO definition, which consists on finding the maximum pressure oscillation in the time domain. Both indices have been implemented online in a four-stroke SI engine and its performance is illustrated by using a classical knock control strategy. Results obtained under different operating conditions demonstrate that the improved knock index definition can substantially reduce the variability of the spark advance angle control, avoiding strong knocking events and reducing engine vibration.]]>
机译:<![cdata [ 亮点 提出了一种改进爆震检测的方法。 方法区分结束的燃烧和自燃之间的方法气体。 该方法不需要任何校准工作。 爆震事件的最终定义允许低爆震检测。 < / ce:si mple-para> 抽象 在本文中,爆震现象是研究和爆震现象在时频域中表征。从分析结果中,提出了一种新的爆震事件定义,该定义比较了通过最终气体自燃产生的气缸谐振的激励与与燃烧相关联的汽缸共振。新的定义允许在文献中的古典方法之间进行爆震和不敲击周期的更一致的差异,从而允许改善爆震控制策略。 通过使用快速傅里叶变换和窗口功能,建议通过使用快速傅里叶变换和窗口功能来分析两个位置中的压力信号的频谱,即在燃烧结束时分析。与经典MAPO定义进行比较,这包括在时域中找到最大压力振荡。这两种指数都在网上在四冲程SI发动机中实施,并且通过使用经典爆震控制策略来说明其性能。在不同的操作条件下获得的结果表明,改进的爆震指数定义可以大大降低火花提前角度控制的可变性,避免强大的爆震事件和减少发动机振动。 ]]>

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