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Integration of an End-of-Line System for Vibro-Acoustic Characterization and Fault Detection of Automotive Components Based on Particle Velocity Measurements

机译:基于粒子速度测量的汽车零部件振动声学特性和故障检测的线尾系统的集成

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The automotive industry is currently increasing the noise and vibration requirements of vehicle components. A detailed vibro-acoustic assessment of the supplied element is commonly enforced by most vehicle manufacturers. Traditional End-Of-Line (EOL) solutions often encounter difficulties adapting from controlled environments to industrial production lines due the presence of high levels of noise and vibrations generated by the surrounding machinery. In contrast, particle velocity measurements performed near a rigid radiating surface are less affected by background noise and they can potentially be used to address noise problems even in such conditions. The vector nature of particle velocity, an intrinsic dependency upon surface displacement and sensor directivity are the main advantages over conventional solutions. As a result, quantitative measurements describing the vibro-acoustic behavior of a device can be performed at the final stage of the manufacturing process. This paper presents the practical implementation of an EOL system based on data acquired with a single 3D probe containing three orthogonally placed acoustic particle velocity sensors. Aspects such as installation process, feature extraction, classification, fault detection and diagnosis are hereby discussed. The presented results provide experimental evidence for the viability of particle velocity-based solutions for EOL control applications.
机译:当前,汽车工业正在增加对汽车部件的噪声和振动的要求。大多数车辆制造商通常都会对提供的元件进行详细的振动声学评估。传统的线下(EOL)解决方案由于周围机械产生的高水平噪声和振动而导致从受控环境适应工业生产线的过程中经常遇到困难。相反,在刚性辐射表面附近执行的粒子速度测量受背景噪声的影响较小,即使在这种情况下,它们也可能用于解决噪声问题。与常规解决方案相比,粒子速度的矢量性质,对表面位移的固有依赖性和传感器方向性是其主要优点。结果,可以在制造过程的最后阶段执行描述设备的振动声行为的定量测量。本文介绍了一个EOL系统的实际实现,该系统基于一个包含3个正交放置的声粒子速度传感器的3D探针所获得的数据。因此讨论诸如安装过程,特征提取,分类,故障检测和诊断等方面。提出的结果为基于粒子速度的EOL控制应用解决方案的可行性提供了实验证据。

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