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Advanced Signal Processing Tools for the Vibratory Surveillance of Assembly Faults in Diesel Engine Cold Tests

机译:先进的信号处理工具,用于柴油机冷测试中的装配故障的振动监测

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摘要

This paper addresses the use of several signal processing tools for monitoring and diagnosis of assembly faults in diesel engines through the cold test technology. One specific fault is considered here as an example: connecting rod with incorrectly tightened screws. First, the experimental apparatus concerning the vibration tests is introduced. Subsequently, the dynamic analysis of the engine has been carried out in order to calculate the connecting rod forces against the crankpin for predicting the position where mechanical impacts are expected. Then, a vibration signal model for this type of faults is introduced. It deals with the cyclostationary model in which the signal is subdivided into two main parts: deterministic and nondeterministic. Finally, the acceleration signals acquired from the engine block during a cold test cycle at the end of the assembly line are analyzed. For quality control purposes in order to obtain reliable thresholds for the pass/fail decision, a method based on the image correlation of symmetrized dot patterns is proposed. This method visualizes vibration signals in a diagrammatic representation in order to quickly detect the faulty engines in cold tests. Moreover, the fault identification is discussed on the basis of the cyclostationary model of the signals. The first-order cyclostationarity is exploited by the analysis of the time synchronous average (TSA). In addition, the residual signal is evaluated by subtracting the TSA from the raw synchronized signal, and thus, the second-order cyclostationarity analysis is developed by means of the Wigner-Ville distribution (WVD), Wigner-Ville spectrum (WVS), and mean instantaneous power. Moreover, continuous wavelet transform is presented and compared with the WVD and WVS.
机译:本文介绍了通过冷测试技术使用几种信号处理工具监视和诊断柴油机装配故障的方法。这里以一个特定的故障为例:连杆上的螺丝拧紧不正确。首先,介绍与振动试验有关的实验装置。随后,对发动机进行了动态分析,以计算连杆对曲柄销的作用力,以预测可能受到机械冲击的位置。然后,介绍了针对此类故障的振动信号模型。它涉及循环平稳模型,其中信号分为两个主要部分:确定性和非确定性。最后,在组装线末端的冷测试周期中分析从发动机缸体获得的加速度信号。为了质量控制目的,为了获得通过/失败决定的可靠阈值,提出了一种基于对称点图案的图像相关性的方法。此方法以图表形式可视化振动信号,以便在冷测试中快速检测出故障的发动机。此外,基于信号的循环平稳模型讨论了故障识别。通过对时间同步平均(TSA)的分析来利用一阶循环平稳性。另外,通过从原始同步信号中减去TSA来评估残留信号,因此,利用Wigner-Ville分布(WVD),Wigner-Ville频谱(WVS)和平均瞬时功率。此外,提出了连续小波变换并将其与WVD和WVS进行比较。

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  • 来源
    《Journal of Vibration and Acoustics》 |2010年第2期|p.021008.1-021008.10|共10页
  • 作者单位

    Department of Engineering, University of Ferrara, Via Saragat 1,44100 Ferrara, Italy;

    Department of Engineering, University of Ferrara, Via Saragat 1,44100 Ferrara, Italy;

    Department of Engineering, University of Ferrara, Via Saragat 1,44100 Ferrara, Italy;

    Department of Engineering, University of Ferrara, Via Saragat 1,44100 Ferrara, Italy;

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