将 (2n + 1) 点二进制转换为 3n + 1 点四进制分区方案的一般化转换
Rabia Hameed1, Sidra Nosheen2, Jihad Younis3
1Department of Mathematics, The Government Sadiq College Women University Bahawalpur, Bahawalpur, Pakistan. rabia.hameed@gscwu.edu.pk.
Scientific reports
|February 25, 2025
概括
本研究介绍了一种方法,可以从二进制模型中创建四进制细分方案,从而降低计算成本并提高模型的流性. 新方案在参数应用中提供了更大的灵活性.
科学领域:
- 计算机辅助设计 计算机辅助设计
- 几何建模 几何建模
- 应用数学 应用数学 应用数学
背景情况:
- 分区方案是曲线和表面生成的几何建模的基础.
- 二进制方案 (使用2点) 被广泛使用,但可能需要许多代.
- 现有的四分制计划 (使用4分) 在灵活性和效率方面存在局限性.
研究的目的:
- 建立一个一般化的方法来从二进制的四进制细分方案中推导四进制细分方案.
- 分析新衍生出的四级体系的特性和性能.
- 提高分区建模中的计算效率和参数灵活性.
主要方法:
- 从[公式:参见文本]-点二进制方案中构建[公式:参见文本]点四进制方案的通用公式.
- 进行图形和理论分析来比较二进制和四进制方案.
- 评估保存形状的特性,连续性和光滑性.
主要成果:
- 成功地从二进制方案中衍生出新的四进制方案,产生基于"n"的奇点/偶点方案.
- 四元制方案的模型质量与二元制方案的模型质量相似,代次数较少.
- 演示了降低计算成本和延长参数间隔的连续性.
- 与传统的二进制方案相比,增强了模型的流性和灵活性.
结论:
- 一般化方法有效地弥合了二进制和四进制的细分方案.
- 衍生四元制方案提供了显著的计算优势和改进的参数控制.
- 这项研究扩大了细分方案在计算机图形和几何建模中的适用性和灵活性.
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