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Duodecimal Resonant Numeration: Resonance Structure Datasets and Spiral-Space Visualizations

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Zenodo2026-05-07 更新2026-05-26 收录
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This release contains selected research datasets, resonance visualizations, spiral-space representations, and cross-instrument comparison examples from the: Duodecimal Resonant Numeration framework for resonance-oriented analysis of complex signals. The project explores interpretable spatial-temporal representations of resonance structures using harmonic continuity, resonance-chain analysis, and spiral-based visualization methods. Included materials contain: - interactive spiral-space visualizations- note-box resonance profile examples- cross-instrument resonance comparisons- publication-oriented figures- supporting research documentation Musical signals are currently used as a controllable resonance environment for experimentation and validation. Potential application areas include: - acoustics- signal analysis- resonance visualization- vibration analysis- structural diagnostics- geophysical signal interpretation- resonance-based monitoring systems This public release focuses on research results, datasets, and visualization examples. The complete internal implementation framework is not included.

本次发布包含来自十二进制共振计数(Duodecimal Resonant Numeration)框架的精选研究数据集、共振可视化成果、螺旋空间表征以及跨乐器对比示例,该框架用于面向共振的复杂信号分析。 本项目依托谐波连续性、共振链分析与螺旋可视化方法,探索共振结构的可解释时空表征。 本次发布包含的素材包括: - 交互式螺旋空间可视化成果 - 带注释框的共振特征剖面示例 - 跨乐器共振对比案例 - 适配出版规范的图表 - 配套研究文档 当前以音乐信号作为可控共振环境,用于实验开展与效果验证。 潜在应用领域涵盖: - 声学 - 信号分析 - 共振可视化 - 振动分析 - 结构诊断 - 地球物理信号解译 - 基于共振的监测系统 本次公开发布仅聚焦研究成果、数据集与可视化示例。 完整的内部实现框架未包含于本次发布中。

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Zenodo
创建时间:
2026-05-07
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