用多项式根生成艺术与科学可视化,支持创作与研究双用途。
Polynomiogram: An Integrated Framework for Root Visualization and Generative Art
- 通过用户定义参数生成多项式系数,灵活控制根分布
- 结合快速计算与高精度求解,支持大规模可视化与严谨验证
- 既可用于分析多项式分岔结构,也能生成个性化艺术作品
本文提出Polynomiogram框架,一个用于探索、可视化和生成多项式根系统的综合计算平台。其核心创新在于一种灵活的采样机制:两个独立参数由用户定义域生成,并通过生成函数映射为多项式系数,使同一数学基础同时支持科学研究与算法艺术创作。框架集成两种互补数值引擎:基于NumPy的伴随矩阵求解器实现高速大规模计算,MPSolve则提供高精度、科学严谨的验证。数值准确性通过经典系综(如Kac与Lucas多项式)验证。该方法应用于三次多项式系统,分析其分岔结构,展现其在探索根现象及教育可视化代数与动力系统概念方面的价值。除分析外,Polynomiogram还展示了生成个性化艺术的潜力,例如生成形似木槿花的自然形态,以及通过题献作品表达对人工智能与大语言模型发展的感恩之情。
原文摘要 · Abstract (English)
This work presents the Polynomiogram framework, an integrated computational platform for exploring, visualizing, and generating art from polynomial root systems. The main innovation is a flexible sampling scheme in which two independent parameters are drawn from user defined domains and mapped to the polynomial coefficients through a generating function. This design allows the same mathematical foundation to support both scientific investigation and generative algorithmic art. The framework integrates two complementary numerical engines: NumPy companion matrix solver for fast, large scale computation and MPSolve for high precision, scientifically rigorous validation. This dual architecture enables efficient visualization for creative use and accurate computation for research and education. Numerical accuracy was verified using classical ensembles, including the Kac and Lucas polynomials. The method was applied to the cubic polynomial system to analyze its bifurcation structure, demonstrating its value as both a scientific tool for exploring root phenomena and an educational aid for visualizing fundamental concepts in algebra and dynamical systems. Beyond analysis, the Polynomiogram also demonstrated its potential as a tool for personalized generative art. Examples include the use of the platform to generate a natural form resembling a hibiscus flower and to create personalized artwork expressing gratitude toward advances in artificial intelligence and large language models through a tribute composition.
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