Application of Discrete Wavelet Transform (DWT) in Combustion Failure Detection of IC Engines

F. A. Shirazi, M. Mahjoob
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引用次数: 17

Abstract

Fault detection of internal combustion engines has been started to develop more rapidly in recent years. Few works have been published on time-frequency analysis of IC engine vibration signals. These types of analysis are fully adapted to transient nature of IC engine signals and do not possess the drawbacks of traditional methods based on Fourier analysis. In this paper we used the vibration signals taken experimentally from a typical 4-cylinder IC engine. Ignition failures were introduced and their effects were investigated. Since the signals were noisy the time synchronous averaging (TSA) was used to extract the dominant transient behavior of the signals. After TSA, discrete wavelet transform (DWT) was employed to transfer the signal in time domain to the time-frequency domain. DWT holds significant properties which make it suitable for fault detection and diagnosis. The results showed that DWT decomposition in 4th approximation level is appropriate for fault detection. For this level and the higher levels, the trends of the signal variations were studied in different operating conditions of the engine, namely the healthy and faulty ones. The results are promising and reveal the effectiveness of the method. Comparison between our previous works and this new approach shows a simpler interpretation of DWT results over other time-frequency methods such as STFT and CWT. These facts demonstrate the possibility of using DWT for monitoring combustion failure of IC engines in addition to traditional applications such as diagnosis of rotating machineries.
离散小波变换在内燃机燃烧故障检测中的应用
内燃机故障检测是近年来发展较快的一门学科。内燃机发动机振动信号的时频分析研究成果较少。这些分析方法完全适应了内燃机信号的瞬态特性,克服了传统傅立叶分析方法的缺点。本文采用了一台典型的四缸内燃机的实验振动信号。介绍了点火故障,并对其影响进行了分析。由于信号有噪声,采用时间同步平均(TSA)提取信号的主导暂态行为。TSA后,采用离散小波变换(DWT)将时域信号转换为时频域信号。DWT具有重要的特性,使其适合于故障检测和诊断。结果表明,小波变换在第4近似水平上的分解是适合于故障检测的。针对该水平及更高水平,研究了发动机在不同工况下,即正常工况和故障工况下信号变化的趋势。结果显示了该方法的有效性。我们之前的工作与这种新方法的比较表明,与其他时频方法(如STFT和CWT)相比,DWT结果的解释更简单。这些事实证明,除了旋转机械诊断等传统应用之外,使用DWT监测内燃机燃烧故障的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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