基于多智能决策算法融合的手工艺品设计新方法

Sci. Program. Pub Date : 2022-01-03 DOI:10.1155/2022/8495381
Xiaotian Sun
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引用次数: 0

摘要

随着人工智能的飞速发展,手工艺设计也从人工设计发展到人工智能设计。传统手工艺设计存在耗时长、产量低的问题,需要对工艺技术进行改进。人工智能技术可以为手工艺设计提供优化的设计步骤,提高设计效率和工艺水平。手工艺品是一种重要的社会产品,存在于人们的日常生活中。在当今社会,很多人做手工艺品,并有大型展览。此外,手工艺品的展示也非常壮观和震撼。在手工艺品的设计中,传统的设计方法已经不能完全跟上手工艺品的生产速度和效率。因此,本文在工艺品设计方法中采用多节点分支设计的融合多智能决策算法。采用算法模型组合的方法对工艺品的布局进行分析和设计,提高了工艺品的设计效率和生产效率。本文将采用两种智能算法进行融合;它们分别是由粒子群优化得到的遗传算法和GA-PSO融合算法,并通过数学模型的构建和函数的构建,将它们嵌入到手工艺设计方法中应用。将三种智能算法的性能参数指标数据与GA-PSO融合算法进行比较,得出GA-PSO融合算法的正确率为97%,可读性为82%,鲁棒性为72%,结构为61%,具有更好的重要指标。目前有四种算法对工艺设计各个方面的每个设计问题进行优化。通过仿真实验比较了设计效率、图像分布率、图像优化程度和图像清晰度。与传统设计方法和手工设计方法三种智能算法相比,GA-PSO融合算法能有效改善手工艺品的设计方法和设计效果,设计效率为92.1%,图像分布率为82.7%,图像优化程度为94.3%,布局空白率为84%。最后,四种算法的空间复杂度实验表明,GA-PSO算法在11.42的空间复杂度下可以达到9.73的色散,使得降维相对稳定,该算法在工艺品的设计和应用中能够保持稳定性。
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A Novel Method for Handicrafts Design Based on Fusion of Multi-Intelligent Decision Algorithm
With the rapid development of artificial intelligence, handicraft design has developed from artificial design to artificial intelligence design. Traditional handicraft design has the problems of long time consumption and low output, so it is necessary to improve the process technology. Artificial intelligence technology can provide optimized design steps in handicraft design and improve design efficiency and process level. Handicrafts are regarded as important social products and exist in people’s daily life. In the current society, many people do handicrafts and there are major exhibitions. Furthermore, the display of handicrafts is also very grand and shocking. In the design of handicrafts, the traditional design method cannot completely keep up with the production speed and efficiency of handicrafts. Therefore, this paper adopts the fusion multi-intelligent decision algorithm of multi-node branch design in the design method of handicraft. The algorithm model combination is used to analyze and design the layout of the handicraft, which speeds up the design efficiency and production of the handicraft. In this paper, two intelligent algorithms will be used for fusion; they are genetic algorithm and GA-PSO fusion algorithm obtained by particle swarm optimization and they are embedded in handicraft design method for application through mathematical model construction and function construction. After comparing the performance parameter index data of three intelligent algorithms and GA-PSO fusion algorithm, it is obtained that GA-PSO fusion algorithm is 97% correct and has 82% readability, 72% robustness, and 61% structure, making it have better important indicators. Four algorithms optimize each design problem in all aspects of handicraft design at present. Design efficiency, image distribution rate, image optimization degree, and image clarity are compared by simulation experiments. Compared with three intelligent algorithms, traditional design methods, and manual design methods, GA-PSO fusion algorithm can effectively improve the design method and design effect of handicrafts with 92.1% design efficiency, 82.7% image distribution rate, 94.3% image optimization degree, and 84% layout void rate. Finally, the space complexity experiment of four algorithms shows that GA-PSO algorithm can achieve 9.73 dispersion with 11.42 space complexities, which makes the dimension reduction relatively stable, and the algorithm can maintain stability in the design and application of handicrafts.
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