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A direct transform for determining the trapped mass on an internal combustion engine based on the in-cylinder pressure resonance phenomenon

机译:基于缸内压力共振现象确定内燃机上的滞留质量的直接变换

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It has lately been demonstrated that the resonance of the in-cylinder pressure may be used for inferring the trapped mass in an internal combustion engine. The resonance frequency changes over time as the expansion stroke takes place, and hence time-frequency analysis techniques may be used for determining the instantaneous frequency. However, time-frequency analysis has different problems when obtaining the spectral content of the signal, e.g. Short-Time Fourier Transform dilutes the frequency spectrum, and the Wigner Distribution creates cross terms that difficult its interpretation. In addition, time-frequency analysis requires a significant computational burden. This paper presents a direct transform, based on the resonance phenomenon, which obtains the trapped mass by convolving the pressure trace with the theoretical resonance behaviour. The method permits avoiding the spectral problems of the time-frequency transformations by obtaining the trapped mass directly without the need of inferring the frequency content.
机译:最近已经证明,缸内压力的共振可以用于推断内燃机中的滞留质量。谐振频率随着膨胀冲程的发生而随时间变化,因此可以使用时频分析技术来确定瞬时频率。然而,当获得信号的频谱内容时,例如,时频分析具有不同的问题。短时傅立叶变换会稀释频谱,而维格纳分布会产生难以解释的交叉项。另外,时频分析需要大量的计算负担。本文提出了一种基于共振现象的直接变换,该变换通过将压力迹线与理论共振行为进行卷积来获得俘获质量。该方法允许通过直接获得捕获的质量而避免了时频变换的频谱问题,而无需推断频率含量。

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