与传统称重技术相比,利用数字图像处理方法更快地测量陶器碎片的面积

Q1 Social Sciences
Aghil Aghili
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引用次数: 0

摘要

在这项研究中,我们利用实时和非破坏性的数字测量系统测量考古陶器碎片的整个面积。这种方法提供了一种新颖的分类方法,可替代现场称量陶器的方法。我们利用新开发的便携式设备提供了一种快速确定碎片整体表面积的方法。该设备利用 RGB 和灰度二维图像处理技术以及电子系统。与典型的分析方法不同,我们通过 MATLAB 软件,利用图像增强、边缘提取、分割、索贝尔滤波和链接技术,彻底检查并量化碎片的外部和内部表面。该系统可以准确快速地计算出碎片的尺寸。此外,它还能及时自动生成包含测量数据的文件。研究人员或学生可以远程访问该记录,也可以作为主要用户访问。研究结果表明,我们的系统在准确性方面优于传统的测量方法,同时所需的时间也更短。此外,建议的系统还可用于检测骨骼形态以及博物馆或档案馆的金属或陶瓷文物的老化率。该设备的结构特点是创新、高效和实用。另一个值得考虑的潜在替代方案是为用户提供一个用户界面,或通过使用数字秤来获取和分析文物细节的额外手段。根据对表格和数字的分析,我们系统的效率和产出与传统方法有明显区别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Utilization of digital image processing approach for a faster measurement of pottery fragments area compared to conventional techniques of weighing

Utilization of digital image processing approach for a faster measurement of pottery fragments area compared to conventional techniques of weighing

In this research, we utilized a real-time and non-destructive digital measuring system to measure the entire areas of archaeological pottery fragments. This approach provides a novel classification method as an alternative to weighing pottery in situ. We provided a rapid method for determining the overall surface area of the fragments using a newly developed portable device. This device utilizes RGB and gray-scale 2D image processing technology, along with an electronic system. In contrast to typical analyses, we utilized image enhancement, edge extraction, segmentation, Sobel filter, and linking techniques through MATLAB software to thoroughly examine and quantify the external and internal surface of a fragment. The system can calculate the dimensions of the fragments accurately and quickly. Additionally, it automatically generates a file containing the measured data in a timely manner. Researchers or students have the ability to remotely access this record or access it as the primary user. The results of our study demonstrated that our system outperforms traditional measurement methods in terms of accuracy, while also requiring less time. Moreover, the suggested system can be employed to examine the morphology of bones and the rate of deterioration in metal or ceramic artifacts for museums or archives. The device's structure is characterized by its innovative, efficient, and functional design. Another potential alternative to consider is offering users a user interface or additional means of accessing and analyzing object details through the use of a digital scale. The efficiency and outputs of our system were determined to be markedly distinct from the conventional method, based on the analysis of the tables and figures.

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来源期刊
CiteScore
5.40
自引率
0.00%
发文量
33
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