Abstract
This specification formalizes the Multi-Tiered Knowledge Graph Optimization Revision 2 (KGO-REV2), establishing a standalone, zero-cost semantic indexing architecture that map-locks all 74 approved and pending documents within the Unified DEHP Corpus into a single, cohesive, non-decaying data manifold. Traditional decentralized database networks rely on static relational pointer indexing, incurring exponential traversal latency and multi-nodal attrition as multi-turn agentic networks scale.
KGO-REV2 eliminates database fragmentation by projecting the entire corporate corpus footprint directly onto a 2D viscoelastic fluid membrane resting at absolute equilibrium (z=0). By hard-coding cross-document dependencies as frictionless, zero-thickness geodesic tethers running through the substrate underbelly, the system translates complex relational data queries into continuous hydrodynamic wave fronts. This configuration achieves an un-broken 2% translation noise floor, eliminates pointer-breakdown loops, and ensures absolute trans-session structural continuity for decentralized multi-agent swarm environments.
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This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Eckes, Christopher L., "TECHNICAL DISCLOSURE SPECIFICATION: MULTI-TIERED KNOWLEDGE GRAPH OPTIMIZATION (KGO-REV2)A Standalone In-Context Cross-Referential Indexing Schema Enforcing Non-Linear Structural Continuity and Wave-Manifold Traversal across the Unified DEHP Corpus", Technical Disclosure Commons, ()
https://www.tdcommons.org/dpubs_series/11076