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Vibro-acoustic condition monitoring of Internal Combustion Engines: A critical review of existing techniques

机译:内燃机的振动声状态监测:对现有技术的严格审查

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This paper deals with the state-of-the-art strategies and techniques based on vibro-acoustic signals that can monitor and diagnose malfunctions in Internal Combustion Engines (ICEs) under both test bench and vehicle operating conditions. Over recent years, several authors have summarized what is known in critical reviews mainly focused on reciprocating machines in general or on specific signal processing techniques: no attempts to deal with IC engine condition monitoring have been made. This paper first gives a brief summary of the generation of sound and vibration in ICEs in order to place further discussion on fault vibro-acoustic diagnosis in context. An overview of the monitoring and diagnostic techniques described in literature using both vibration and acoustic signals is also provided. Different faulty conditions are described which affect combustion, mechanics and the aerodynamics of ICEs. The importance of measuring acoustic signals, as opposed to vibration signals, is due since the former seem to be more suitable for implementation on on-board monitoring systems in view of their non-intrusive behaviour, capability in simultaneously capturing signatures from several mechanical components and because of the possibility of detecting faults affecting airborne transmission paths. In view of the recent needs of the industry to (-) optimize component structural durability adopting long-life cycles, (-) verify the engine final status at the end of the assembly line and (-) reduce the maintenance costs monitoring the ICE life during vehicle operations, monitoring and diagnosing system requests are continuously growing up. The present review can be considered a useful guideline for test engineers in understanding which types of fault can be diagnosed by using vibro-acoustic signals in sufficient time in both test bench and operating conditions and which transducer and signal processing technique (of which the essential background theory is here reported) could be considered the most reliable and informative to be implemented for the fault in question.
机译:本文研究了基于振动声信号的最新策略和技术,该技术可以在测试台和车辆运行条件下监视和诊断内燃机(ICE)的故障。近年来,几位作者总结了关键评论中的已知信息,这些评论主要集中于一般的往复式机器或特定的信号处理技术:尚未尝试处理IC发动机状态监测。本文首先简要介绍了ICE中声音和振动的产生,以便对上下文中的故障振动声诊断进行进一步的讨论。还概述了使用振动和声音信号的文献中描述的监视和诊断技术。描述了影响内燃机的燃烧,力学和空气动力学的不同故障状况。由于与振动信号相反,测量声学信号的重要性是由于前者似乎更适合在车载监控系统上实施,因为它们具有非侵入性的行为,能够同时从多个机械组件中捕获特征和识别信号的能力。因为有可能检测出影响机载传输路径的故障。鉴于行业最近对(-)采用长寿命周期来优化组件结构耐用性的需求,(-)在装配线末端验证发动机的最终状态,以及(-)减少了监测ICE寿命的维护成本在车辆运行过程中,监视和诊断系统的要求不断增长。本综述可以作为测试工程师的有用指南,帮助他们了解在测试台和操作条件下,在足够的时间内通过使用振动声信号可以诊断出哪种类型的故障,以及哪种传感器和信号处理技术(其基本背景理论在这里被报告)可以被认为是对所讨论的故障实施的最可靠和最有用的信息。

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