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HLV‑AILEE propulsion framework modeling phase/geometry alignment as a gating variable for momentum transfer. Predicts threshold collapse, hysteresis, and testable performance regimes relevant to aerospace propulsion.
A physics-informed, safety-driven enhancement layer for aerospace, based on the Helix-Light-Vortex (HLV) framework. Designed to unify software behavior across flight systems, improve predictive diagnostics, and support next-generation Quality and Safety architectures.
Production‑grade implementation of Marcel Krüger’s Helix‑Light‑Vortex (HLV) Theory for EV battery intelligence. Real‑time dual‑state modeling delivers predictive health, degradation awareness, torque/regen optimization, and safe multi‑vehicle integration through hardened BMS middleware.
Reference implementation of Symmetry-Driven Coherence Restoration (SDCR) in open quantum systems. Implements symmetry selection, recovery limits, and falsifiable phase/coherence effects within standard Lindblad dynamics.
Deterministic, inspectable phase-readiness middleware for safety-critical closed-loop systems. Separates state eligibility from control logic using explicit, auditable rules. Designed for fail-safe operation, reproducibility, and regulatory-aligned engineering.