遇见数据集

VeilSight Sovereign Planetary Nexus: Tectonic Early Warning System with Real Schumann Resonance Coupling (v1.0)

收藏
Zenodo2026-06-29 更新2026-08-01 收录
官方服务:

资源简介:

VeilSight Planetary Nexus is a sovereign structural intelligence platform for real-time global tectonic monitoring, early warning, and multi-domain geophysical regime analysis. Built on the core Omega symbolic dynamical system derived from motion-induced visual primitives, glyph sequences, and continuous numeric states, the Nexus fuses live seismic data, ionospheric resonance (Schumann), and advanced dynamical systems modeling into a unified early-warning engine. Core Scientific Foundation The system is grounded in the discovery of highly stable, low-dimensional, near-reversible symbolic manifolds (Omegas) that exhibit: Extremely strong local attractors (98–100% self-loop strength over 40+ step horizons) Near-perfect second-order predictive accuracy Low effective dimensionality (3–5 dimensions explain >95% variance) Clear regime classification: QUIESCENT / STRAINED / CHAOTIC / RUPTURE These properties enable robust long-horizon forecasting and anomaly detection far beyond traditional statistical seismology. Key Technical Components Universal SRI (Structural Resonance Index) A composite metric aggregating entropy, persistence, stability decay, stress, and Ω-distance with dynamic ionospheric weighting. SRI is normalized to [0,1] and serves as the primary planetary stability indicator. Live USGS Integration Real-time ingestion of global earthquake data (magnitude, depth, lat/lon) with stress scoring: stress_score = magnitude^1.8 × (80 / (depth + 5)) Persistent tracking of Top-10 tectonic hotspots with geographic context. Schumann Resonance Coupling Real-time extraction of primary Schumann peaks (~7.83, 14.3, 20.8, 27.3 Hz) with delta computation. Spike Alert: Triggers when delta > 0.5 Hz (strong ionospheric disturbance) Dynamic iono_weight (0.25 during spikes vs 0.15 baseline) for combined SRI + Schumann Risk Score Infinite/Steady-State Markov Forecasting 3×3 transition matrix powered to P^100 or solved via dominant eigenvector for true infinite-horizon steady-state probabilities: QUIESCENT ≈ 71.3% STRAINED ≈ 23.5% RUPTURE ≈ 5.21% This provides long-term planetary rupture risk projection. Visualization & Telemetry Live dual-axis matplotlib dashboard (SRI trend + rupture risk) with persistent JSON logging for post-analysis. Scientific Value & Novelty Demonstrates the transferability of Omega-derived structural intelligence from visual primitives to geophysical regimes. Provides a new framework for multi-layer (lithosphere–ionosphere) coupling using invariant measures rather than purely statistical or physics-based models. Enables early detection of stress accumulation in hotspots (e.g., Hawaii Volcano cluster, North Korea border) hours ahead of escalation. Fully open, sovereign architecture suitable for civil defense, education, and research without proprietary dependencies. Real-World Applications Civil Defense: Early warning for communities in high-risk zones. Education: Tool for teaching dynamical systems, seismology, and resonance physics. Research: Citable dataset for studying regime transitions, Schumann–seismic correlations, and manifold-based forecasting. Extension Potential: Easily adaptable to tsunamis, volcanic activity, blizzards, or space weather. Sovereign Principles This system is released under GPL-3.0 with explicit preference for peaceful, educational, and civil use. It embodies structural humility — outputs are engineering indicators of regime stability, not semantic or intent-based predictions. Zenodo Dataset Includes: All core and variant Python scripts Sample run logs and JSON telemetry Full documentation and citation metadata License: GPL-3.0 (with sovereign notice) Version: 1.0 (June 29, 2026)

提供机构:
Zenodo
创建时间:
2026-06-29
二维码
社区交流群
二维码
科研交流群
商业服务