Digital Visual Design Reengineering and Application Based on K-means Clustering Algorithm

Lijie Ren, Hyunsuk Kim
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Abstract

INTRODUCTION: The article discusses the key steps in digital visual design reengineering, with a special emphasis on the importance of information decoding and feature extraction for flat cultural heritage. These processes not only minimize damage to the aesthetic heritage itself but also feature high quality, efficiency, and recyclability.OBJECTIVES: The aim of the article is to explore the issues of gene extraction methods in digital visual design reengineering, proposing a visual gene extraction method through an improved K-means clustering algorithm.METHODS: A visual gene extraction method based on an improved K-means clustering algorithm is proposed. Initially analyzing the digital visual design reengineering process, combined with a color extraction method using the improved JSO algorithm-based K-means clustering algorithm, a gene extraction and clustering method for digital visual design reengineering is proposed and validated through experiments.RESULT: The results show that the proposed method improves the accuracy, robustness, and real-time performance of clustering. Through comparative analysis with Dunhuang murals, the effectiveness of the color extraction method based on the K-means-JSO algorithm in the application of digital visual design reengineering is verified. The method based on the K-means-GWO algorithm performs best in terms of average clustering time and standard deviation. The optimization curve of color extraction based on the K-means-JSO algorithm converges faster and with better accuracy compared to the K-means-ABC, K-means-GWO, K-means-DE, K-means-CMAES, and K-means-WWCD algorithms.CONCLUSION: The color extraction method of the K-means clustering algorithm improved by the JSO algorithm proposed in this paper solves the problems of insufficient standardization in feature selection, lack of generalization ability, and inefficiency in visual gene extraction methods.
基于 K-means 聚类算法的数字视觉设计再造与应用
简介:文章讨论了数字视觉设计再造的关键步骤,特别强调了信息解码和特征提取对于平面文化遗产的重要性。这些过程不仅能最大限度地减少对美学遗产本身的损害,还具有高质量、高效率和可回收性的特点:方法:本文提出了一种基于改进的 K-means 聚类算法的视觉基因提取方法。初步分析了数字视觉设计再造过程,结合基于改进JSO算法的K-means聚类算法的颜色提取方法,提出了一种数字视觉设计再造的基因提取和聚类方法,并通过实验进行了验证。结果:结果表明,提出的方法提高了聚类的准确性、鲁棒性和实时性。通过与敦煌壁画的对比分析,验证了基于 K-means-JSO 算法的色彩提取方法在数字视觉设计再工程应用中的有效性。基于 K-means-GWO 算法的方法在平均聚类时间和标准偏差方面表现最佳。与 K-means-ABC、K-means-GWO、K-means-DE、K-means-CMAES 和 K-means-WWCD 算法相比,基于 K-means-JSO 算法的颜色提取优化曲线收敛速度更快,精度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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