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Preliminary investigation of the in-cylinder pressure signal using Teager energy operator

机译:茶叶能量算子缸内压力信号的初步研究

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The Teager energy operator (TEO) has been used in various areas, including speech analysis, image processing, machinery fault diagnostics and biomedical engineering. The operator provides a simple and efficient solution to the problem of estimating the instantaneous frequency and envelope of amplitude and frequency-modulated (AM-FM) signals. Furthermore, this method is easy to implement and has a low computational complexity. In the paper, the author proposes using TEO in an automotive application to perform preliminary investigations of the in-cylinder pressure signal. Research in this area is important because it determines fuel consumption, engine durability as well as the emission of air pollutants. Detecting abnormal combustion in spark-ignition (SI) engines is possible by measuring and analysing the engine block vibrations, the ionisation current and the in-cylinder pressure. However, the fundamental variable that provides an in-depth insight into the combustion process is the pressure signal. By analysing the signal, a detailed study of the knock phenomenon can be performed, which is necessary to develop a reliable and efficient knock detection method. By applying the proposed technique, we are able to identify the basic parameters of the pressure trace, such as the starting frequency and the rate of frequency change. By knowing the value of the parameters for various engine operating conditions, the performance of a knock detection system can be improved.
机译:Techger能量操作员(TEO)已用于各种领域,包括言语分析,图像处理,机械故障诊断和生物医学工程。操作员提供了一种简单而有效的解决方案,可以解决估计幅度和频率调制(AM-FM)信号的瞬时频率和包络的问题。此外,该方法易于实现并且具有低计算复杂性。本文提出在汽车应用中使用TEO来执行缸内压力信号的初步调查。该领域的研究很重要,因为它决定了燃料消耗,发动机耐用性以及空气污染物的排放。通过测量和分析发动机块振动,电离电流和缸内压力,可以检测火花点火(Si)发动机中的异常燃烧。然而,为燃烧过程提供深入了解的基本变量是压力信号。通过分析信号,可以进行爆震现象的详细研究,这是开发可靠和有效的爆震检测方法所必需的。通过应用所提出的技术,我们能够识别压力迹线的基本参数,例如起始频率和频率变化率。通过了解各种发动机操作条件的参数的值,可以提高爆震检测系统的性能。

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