UTMF v5.2 FULL_DETAILS Metadata Archive 2 (Empirical and Synthetic Datasets)
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This archive contains a complete Unified Temporal–Measurement Framework (UTMF)v5.2 FULL_DETAILS metadata snapshot, generated on 2026-01-03 (UTC). The JSON file stores all subset-level multifractal measurement outputs producedby UTMF v5.2, together with the full configuration state required for deterministicreconstruction of downstream analyses.Specifically, the archive includes: validated subset-level fractal-dimension estimates; full multifractal configuration parameters (scales, detrending order, moment grid); quality control and stability diagnostics for each subset; dataset metadata and provenance information; an embedded snapshot of the multifractal detrended fluctuation analysis (MFDFA)implementation used at runtime (jedi_mfdfa). The archive contains both empirical datasets and synthetic reference datasets,all processed through the identical UTMF v5.2 pipeline without domain-specific tuningor preprocessing. Derived quantities and post-processing Higher-level quantities are not stored explicitly in this JSON file.Instead, they are reconstructed deterministically in post-processing from thearchived subset-level outputs. These include, but are not limited to: dataset-level Fractal Asymmetry Theory (FAT) feature vectors; hierarchical embeddings and clustering in FAT space; Emergence Depth (ED50_{50}50) and related emergence metrics; incremental ensemble construction statistics; rank stabilization, volatility, and insertion-impact diagnostics; post-emergent trajectory measures and confinement analyses; Fractal Asymmetry Kernel (FAK) statistics and update distributions. Because all subset-level measurements and configuration parameters are preserved,all such quantities can be reproduced exactly without rerunning the UTMF pipelineor accessing any raw measurement data. Reproducibility and intended use This metadata archive is designed to support fully reproducible downstreamanalysis of multifractal asymmetry structure under a unified measurement protocol. Using only this JSON file and appropriate analysis scripts, researchers can reproduce: hierarchical and relational analyses in FAT space; Emergence Depth and incremental emergence experiments; post-emergent structural trajectory analyses; empirical confinement and compatibility envelope estimation; kernel-level analyses of asymmetry update statistics. The archive is paper-agnostic by design.It is intended as a stable reference snapshot that can be reused for multiple,methodologically distinct studies without modification. Relation to published work This metadata archive is referenced by, but not limited to, the following works: The Fractal Asymmetry Kernel (FAK): A Universal Statistical Geometry ObservedAcross Multifractal Measurements (DOi: 10.5281/zenodo.18227029) All studies operate exclusively on archived UTMF outputs and derivesresults deterministically in post-processing.Overlap in metadata usage does not imply overlap in analytical scope or conclusions. Scope and exclusions This archive does not include: raw experimental or observational measurements; UTMF execution code beyond the embedded MFDFA snapshot; domain-specific preprocessing scripts; derived analysis results, figures, or tables. All upstream software, raw datasets, and analysis code are archived and citedseparately in the corresponding publications. Summary This UTMF v5.2 FULL_DETAILS metadata archive provides a complete, immutable,and reusable record of subset-level multifractal measurements across a heterogeneousensemble of empirical and synthetic datasets. It enables transparent verification, independent reuse, and long-term archival ofempirical results in Fractal Asymmetry Theory, Emergence Depth analysis, andFractal Asymmetry Kernel studies, without reliance on rerunning measurement pipelinesor accessing raw data.
本归档文件包含生成于2026年1月3日(协调世界时,UTC)的完整统一时序测量框架(Unified Temporal–Measurement Framework, UTMF)v5.2版本的全细节元数据快照。 该JSON文件存储了UTMF v5.2生成的所有子集级多重分形测量输出,以及下游分析确定性重建所需的完整配置状态。 具体而言,本归档包含以下内容: 1. 经过验证的子集级分形维数估计结果; 2. 完整多重分形配置参数(尺度范围、去趋势阶数、矩网格); 3. 各子集的质量控制与稳定性诊断结果; 4. 数据集元数据与来源信息; 5. 运行时所使用的多重分形去趋势波动分析(multifractal detrended fluctuation analysis, MFDFA)实现快照(jedi_mfdfa)。 本归档同时包含实证数据集与合成参考数据集,所有数据均通过完全一致的UTMF v5.2流程处理,未进行任何领域专属调优或预处理。 衍生量与后处理 本JSON文件未显式存储更高阶的衍生量。取而代之的是,可通过归档的子集级输出在后续处理中确定性地重建这些量。 此类衍生量包括但不限于: - 数据集级分形不对称理论(Fractal Asymmetry Theory, FAT)特征向量; - FAT空间中的层级嵌入与聚类结果; - 涌现深度(Emergence Depth, ED50_{50}50)及相关涌现度量; - 增量集成构建统计量; - 秩稳定性、波动性与插入影响诊断结果; - 后涌现轨迹测度与约束分析; - 分形不对称核(Fractal Asymmetry Kernel, FAK)统计量与更新分布。 由于所有子集级测量结果与配置参数均已留存,因此无需重新运行UTMF流程或访问原始测量数据,即可精准复现上述所有衍生量。 可重复性与预期用途 本元数据归档旨在支持在统一测量协议下对多重分形不对称结构开展完全可复现的下游分析。 仅需使用该JSON文件与合适的分析脚本,研究人员即可复现以下内容: 1. FAT空间中的层级与关联分析; 2. 涌现深度与增量涌现实验; 3. 后涌现结构轨迹分析; 4. 实证约束与兼容性包络估计; 5. 不对称更新统计量的核级分析。 本归档在设计上与已发表论文无关,旨在作为稳定的参考快照,可不经修改复用于多个方法学迥异的研究场景。 与已发表工作的关联 本元数据归档被以下(但不限于)相关研究所引用: - 《分形不对称核(FAK):多重分形测量中的通用统计几何》(DOI: 10.5281/zenodo.18227029) 所有相关研究均仅基于归档的UTMF输出,并通过后处理确定性地推导研究结果。元数据使用上的重叠并不代表分析范围或研究结论的重合。 范围与排除项 本归档不包含以下内容: 1. 原始实验或观测测量数据; 2. 除内嵌MFDFA快照之外的UTMF执行代码; 3. 领域专属预处理脚本; 4. 衍生分析结果、图表或表格。 所有上游软件、原始数据集与分析代码均已单独归档,并在对应出版物中予以引用。 总结 本UTMF v5.2全细节元数据归档提供了一份完整、不可变更且可复用的记录,涵盖异构实证与合成数据集集合的子集级多重分形测量结果。 它支持分形不对称理论、涌现深度分析及分形不对称核相关研究中的实证结果的透明验证、独立复用与长期归档,无需依赖重新运行测量流程或访问原始数据。



