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A Method for Constructing an ADVI-Based Statistical Discrimination Model for Hammering Inspection of Highly Mixed Cast-Iron Parts

机译:一种构建基于ADVI的统计辨别模型,用于锤击高度混合铸铁件的检查

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This paper describes a method for constructing a statistical discrimination model to inspect defective cast-iron parts such as graphite-spheroidized defective products by hammering test used in multi-product mass production. The hammering-sound signal includes multiple resonance-line spectra those frequencies vary by defect. For constructing the model, only non-defective hammering-sound data that can be collected from the production line is input, and a distribution function that fits frequency distribution of each resonance-line spectrum is estimated. Since the frequency distribution shows multimodality and asymmetry, estimation is performed by using automatic differentiation variational inference (ADVI) with a mixed normal distribution function. A confidence interval of the obtained distribution function is then regarded as non-defective-product existence section, and the discrimination model is automatically constructed by connecting the sections of all the resonance-line spectra in the audible range. Then, products outside the sections are discriminated as defective products. Results of experiment confirmed that it is possible to achieve hammer-test inspection with detection rate of 100% and prevent overlooking of defective products.
机译:本文介绍了一种通过在多产品批量生产中使用的测试来构建统计辨别模型以检查统计鉴别模型,以检查缺陷的铸铁件,例如石墨球化缺陷产品。锤击声信号包括多个共振线谱,这些频率因缺陷而变化。为了构建模型,仅输入可以从生产线收集的非缺陷锤击声数据,并且估计每个共振线频谱的频率分布的分布函数。由于频率分布示出了多模和不对称性,因此通过使用具有混合正态分布函数的自动分化变化推断(ADVI)来执行估计。然后将所获得的分布函数的置信区间被认为是非缺陷 - 产品存在部分,并且通过将所有谐振线谱的部分连接在可听范围内,自动构建判别模型。然后,部分外部的产品被歧视为缺陷的产品。实验结果证实,可以通过100%的检出率实现锤式测试检查,并防止缺陷的产品。

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