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Fiber length measurement by image processing.

机译:通过图像处理测量纤维长度。

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摘要

This research studied the accuracy and feasibility of cotton fiber length measurement by image processing as an alternative to existing systems. Current systems have some weaknesses especially in Short Fiber Content (SFC) determination, which is becoming an important length parameter in industry.; Seventy-two treatments of five factors were analyzed for length and time measurements by our own computer program. The factors are: Sample preparation (without fiber crossover and with fiber crossover), lighting (backlighting and frontlighting), resolution (37-micron, 57-micron, 106-micron, and 185-micron), preprocessing (4-neighborhood and 8-neighborhood), and processing (outlining, thinning, and adding broken skeletons).; The best results in terms of accuracy, precision and analysis time for images without fiber crossovers were: 106-micron resolution with frontlighting using an 8-neighborhood thresholding algorithm and using an outline algorithm for length determination. With fiber crossovers, 57-micron resolution with backlighting using an 8-neighborhood thresholding algorithm and using a thinning algorithm combined with an adding algorithm for combining broken skeletons. Using the above conditions, 1775 cm2 area can be analyzed using our current equipment in 15 seconds. In the case of images with crossovers, only 117 cm2 can be analyzed in 15 seconds.; This research demonstrates that successful sample preparation without fibre crossovers would create the best fibre length measurement technique, however with fiber crossovers the system efficiency has been proven as well.
机译:这项研究研究了通过图像处理作为现有系统的替代方法来测量棉纤维长度的准确性和可行性。当前的系统存在一些缺点,特别是在短纤维含量(SFC)测定方面,这已成为工业上重要的长度参数。通过我们自己的计算机程序分析了五个因素的72种治疗方法的长度和时间测量结果。这些因素包括:样品制备(无光纤交叉和有光纤交叉),照明(背光和前灯),分辨率(37微米,57微米,106微米和185微米),预处理(4邻和8) -邻域)和处理(概述,细化和添加损坏的骨骼)。就精度,精度和分析时间而言,没有光纤交叉的图像的最佳结果是:使用8邻域阈值算法和轮廓算法进行长度确定时,具有前灯的106微米分辨率。对于光纤分频器,使用8邻域阈值算法,并使用细化算法和加法算法结合背光,将破碎的骨架结合在一起,具有背光的57微米分辨率。在上述条件下,使用我们现有的设备可以在15秒内分析1775 cm 2 区域。对于具有交叉的图像,在15秒内只能分析117 cm 2 。这项研究表明,没有纤维交叉的成功样品制备将创建最佳的纤维长度测量技术,但是,有了纤维交叉,系统效率也得到了证明。

著录项

  • 作者

    Ikiz, Yuksel.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Textile Technology.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 p.5945
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 轻工业、手工业;
  • 关键词

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