Sector-specific knowledge assets that feed TFP instrument calibration — position indicators, velocity thresholds, uncertainty ranges, and reversibility scores for each global sector.
The Systemic Intelligence Library (SIL) is the foundational knowledge layer of the c-ECO Framework. Each SIL document is a structured, research-verified dossier for one of the 17 global sectors monitored by c-ECO — providing the empirical substance that calibrates TFP instruments.
SIL indicators directly populate the P (Position), ΔV (Velocity), σ (Uncertainty), and Lr (Reversibility) variables used to compute the TDR Systemic Proximity Score for each sector.
Each SIL maps 30 primary systemic risks, secondary amplification mechanisms, and a cascade taxonomy — the cross-sector failure pathways that conventional sector analysis ignores.
Applicable international treaties, national frameworks, liability cascade design, and data sovereignty conflicts — the institutional landscape that defines where TFP instruments can and cannot operate.
Five stress test scenarios per sector with Monte Carlo simulation parameters, Black Start recovery timelines, spare parts inventories, and mutual aid agreement architectures.
Tailings risk, extraction systems, aquifer contamination, geotechnical instability, and restoration-linked legal conditioning.
Soil degradation, nutrient cycles, food security, agroindustrial dependency, land conversion, and productive landscape reversibility.
Energy-water interdependence, infrastructure resilience, reversibility liquidity, and systemic instability in power systems.
Freshwater scarcity, hydrological thresholds, aquifer stress, sanitation infrastructure, and water-system instability.
Structural lock-in, civil works, corridor dependency, materials pressure, and threshold-sensitive infrastructure delivery.
Industrial toxicity, hazardous materials, process safety, supply-chain exposure, and reversibility constraints in chemical systems.
Land-use conversion, urban expansion, housing pressure, property exposure, and infrastructure-dependent spatial development.
Data center externalities, computational expansion, digital infrastructure burdens, energy-water pressure, and algorithmic dependency.
Port, corridor, fleet, storage, and movement dependencies that transmit systemic stress across supply chains.
Transmission of systemic environmental risk into guarantees, portfolios, credit instruments, insurance, and reversibility-linked finance.
Algorithmic governance, automated decisions, model risk, data dependency, computational burdens, and systemic digital instability.
Forest integrity, carbon stocks, ecosystem services, natural-asset valuation, biodiversity pressure, and restoration-linked governance.
Satellite dependency, orbital congestion, debris risk, remote-sensing infrastructure, and systemic continuity of space-based services.
Nuclear safety, waste containment, long-duration liability, hazardous storage, and irreversible contamination pathways.
Health-system resilience, public-health capacity, environmental exposure, service continuity, and population vulnerability thresholds.
Disaster response, civil protection, emergency logistics, crisis coordination, and operational capacity under cascading shocks.
Public decision systems, regulatory capacity, institutional coordination, procurement, public finance, and administrative resilience.
Military-civilian infrastructure dependency, defense supply chain exposure, strategic asset vulnerability, and security-critical system resilience.
Research infrastructure integrity, data verification protocols, knowledge system resilience, observational network continuity, and epistemic governance.
Each SIL document follows a standardised nine-part architecture, ensuring consistent calibration inputs across all sectors and enabling cross-sector cascade analysis.
Sector definition and scope, historical evolution timeline for ΔV calibration, global institutional landscape.
30 primary systemic risks with TFP variable linkage, secondary amplification mechanisms, emerging risk horizon scan, and cascade taxonomy across all 17 sectors.
Pre-positioned response protocols by SPS Level, Calibration Council activation matrix, communication blackout contingencies.
Applicable international treaties, national regulatory frameworks (10 jurisdictions), liability cascade architecture, data sovereignty and extraterritoriality conflicts.
30 Position (P) indicators with SPS L3 thresholds and data sources; Velocity (ΔV) rate-of-change indicators; Uncertainty (σ) confidence intervals; Reversibility Liquidity (Lr) capacity scores.
Five stress test scenarios with full TFP variable values, Monte Carlo simulation parameters (10,000 iterations), Black Start recovery timeline.
Restoration provider certification criteria, recovery sequencing with RTO targets, spare parts inventory requirements, mutual aid agreement architecture.
Source classification (Class A — institutional primary, Class B — industry standard, Class C — academic/NGO), cross-referenced by TFP variable.
Source-to-variable matrix, source-to-risk matrix, monitoring gap analysis, dependency matrix, and 60-event historical intelligence library for ΔV calibration.
SIL documents are restricted to c-ECO Fellows and institutional partners. Fellowship admission provides access to all available sectors, updates as new sectors are completed, and calibration training through the TFP programme.