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Knock and Pre-Ignition Detection Using Ion Current Signal on a Boosted Gasoline Engine

机译:使用升压汽油发动机上的离子电流信号敲击和预点火检测

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In order to meet the ever more stringent demands on the CO_2 emission reduction, downsized modern gasoline engine with highly boosted turbo charger meets new challenges such as super knock and pre-ignition, which will influence the engine combustion efficiency, smooth operation and even cause mechanical failure. A spark plug type ion current detection sensor was used in a 1.8L turbo charged gasoline engine. The ion-current wave signal differed greatly under different engine operating conditions such as without knock, with knock of different knock intensities. The frequency spectrum of ion-current was also studied, by the method of discrete Fourier transform (DFT). In knocking cycles, there were fluctuations of frequency 8-13 kHz both in the combustion pressure signal and in the ion current signal, proving the existence of knock information. After calculating the band filter signal and integral signal of ion current signal, both of them showed high linear relationship with knock integral signal. In pre-ignition cycles, ion current signals showed abnormal rise in amplitude before spark ignition signal and detected the pre-ignition events as precisely as cylinder pressure signal. Results proved that ion current detection was an effective method to evaluate knock intensity and pre-ignition fast detection in the downsized turbo charged engines.
机译:为了满足对CO_2减排的更严格的要求,具有高升压的涡轮增压器的缩小式现代汽油发动机符合超敲击和预点火等新挑战,这将影响发动机燃烧效率,平稳运行甚至机械失败。火花塞式离子电流检测传感器用于1.8L Turbo带电汽油发动机。离子电流波信号在不同的发动机操作条件下很大差异,例如没有敲击,敲击不同的爆震强度。通过离散傅里叶变换(DFT)的方法,还研究了离子电流的频谱。在爆震周期中,燃烧压力信号和离子电流信号中存在频率8-13 kHz的波动,证明了爆震信息的存在。在计算带滤波器信号和离子电流信号的积分信号之后,它们都显示出与爆震积分信号的高线性关系。在预点火循环中,离子电流信号在火花点火信号之前显示出幅度的异常上升,并将预点火事件视为汽缸压力信号。结果证明,离子电流检测是评估初级涡轮增压发动机中的爆震强度和预点火前快速检测的有效方法。

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