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Yarn Diameter Measurements Using Coherent Optical Signal Processing

机译:使用相干光信号处理的纱线直径测量

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摘要

A method to measure variations in yarn diameter using coherent optical signal processing based on a single photodiode plus additional electronics is described. The approach enables us to quantify yarn irregularities associated with diameter variations which are Iinearly correlated with yarn mass variations. A robust method of system auto-calibration, eliminating the need for a temperature and humidity controlled environment, is also demonstrated. Two yarns that span the diameter ranges commonly used in the textile industry were used to verify the system linearity and ascertain its resolution. The results obtained have been verified using image analysis. Moreover, a diameter characterization was performed under real-world conditions for three types of yarns and a correlation with capacitive measurements is also presented. The system with sensitivity of 0.034 V/mm2 is able to detect minute variations of yarn diameter and characterize irregularities starting at very low thresholds (commercial systems generally characterize variations of 30% or greater relative to the average value).
机译:描述了使用基于单个光电二极管加上附加电子器件的相干光信号处理测量纱线直径变化的方法。该方法使我们能够量化与直径变化相关的纱线不规则,这与纱线质量变化引起的。还证明了一种稳健的系统自动校准方法,消除了对温度和湿度控制的环境的需求。跨越纺织工业中常用直径范围的两条纱线用于验证系统线性度并确定其分辨率。使用图像分析验证了所获得的结果。此外,在真实世界的条件下进行直径表征,对于三种类型的纱线以及与电容测量的相关性也是如此。灵敏度为0.034V / mm2的系统能够检测纱线直径的微小变形,并以非常低的阈值开始表征不规则性(商业系统通常表征相对于平均值的30%或更大的变化)。

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