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Condition monitoring and diagnosis of injector faults in a diesel engine using in-cylinder pressure and acoustic emission techniques

机译:利用缸内压力和声发射技术对柴油机喷油器故障进行状态监测和诊断

摘要

Failing injectors are one of the most common faults in diesel engines. The severity of these faults could have serious effects on diesel engine operations such as engine misfire, knocking, insufficient power output or even cause a complete engine breakdown. It is thus essential to prevent such faults from occurring by monitoring the condition of these injectors. In this paper, the authors present the results of an experimental investigation on identifying the signal characteristics of a simulated incipient injector fault in a diesel engine using both in-cylinder pressure and acoustic emission (AE) techniques. A time waveform event driven synchronous averaging technique was used to minimize or eliminate the effect of engine speed variation and amplitude fluctuation. It was found that AE is an effective method to detect the simulated injector fault in both time (crank angle) and frequency (order) domains. It was also shown that the time domain in-cylinder pressure signal is a poor indicator for condition monitoring and diagnosis of the simulated injector fault due to the small effect of the simulated fault on the engine combustion process. Nevertheless, good correlations between the simulated injector fault and the lower order components of the enveloped in-cylinder pressure spectrum were found at various engine loading conditions.
机译:喷油器故障是柴油发动机中最常见的故障之一。这些故障的严重性可能严重影响柴油机的运行,例如发动机失火,爆震,功率输出不足,甚至导致发动机完全故障。因此,必须通过监视这些喷油器的状况来防止发生此类故障。在本文中,作者介绍了使用缸内压力和声发射(AE)技术识别柴油机中模拟的初始喷油器故障的信号特征的实验研究结果。使用时间波形事件驱动的同步平均技术来最小化或消除发动机转速变化和振幅波动的影响。已经发现,AE是在时间(曲轴角)和频率(阶数)域中检测模拟的喷射器故障的有效方法。还显示出,由于模拟故障对发动机燃烧过程的影响很小,所以时域缸内压力信号对于状态监测和模拟喷射器故障的诊断是不良的指标。尽管如此,在各种发动机负载条件下,都发现了模拟喷油器故障与包围的缸内压力谱的低阶分量之间的良好相关性。

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