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Misjudgement probability estimation of product inspection based on uncertainty

机译:基于不确定性的产品检测误判性概率估算

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摘要

The product inspection process with measurement uncertainty as a quality indicator is researched. Based on the product quality control information and the design and processing precision, the relationship between the misjudgement probability and measurement uncertainty of conformance testing is established. In view of the limitation of uncertainty evaluation based on the single piece in product inspection, the method for evaluating uncertainty fusing multiple product measurement information in a fully integrated batch is proposed. The uncertainty components caused by the measurement repeatability and reproducibility of the whole test work are evaluated based on the conjugate Bayesian estimation method. The test results show that there is a certain false positive rate in the whole test of the product under the condition of uncertainty. Research results show that the misjudgement probability caused by the measurement uncertainty cannot be ignored. In the product test, batch detection information should be fully integrated to improve the representation of uncertainty evaluation results.
机译:研究了作为质量指标的测量不确定性的产品检测过程。基于产品质量控制信息和设计和加工精度,建立了误判性概率与一致性测试的测量不确定性之间的关系。鉴于基于产品检测中的单件的不确定性评估的限制,提出了一种在完全集成批料中评估不确定度融合多产品测量信息的方法。基于共轭贝叶斯估计方法,评估由测量可重复性和整个测试工作的再现性引起的不确定性组件。测试结果表明,在不确定条件下,产品的整个测试中存在某种假阳性率。研究结果表明,由测量不确定性引起的误判可能无法忽视。在产品测试中,应完全集成批量检测信息以改善不确定性评估结果的表示。

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