THERMO Communication Architecture proposes a conceptual framework for adaptive communication systems based on thermodynamic and information-geometric principles. The work introduces the idea that communication channel states may be represented as points within a structured statistical state space whose geometry reflects thermodynamic loss processes occurring in the physical communication medium. Within this perspective, adaptive communication behaviour can be interpreted as controlled navigation across this state space, where system stability and efficiency are governed by geometric and thermodynamic constraints. The framework outlines several conceptual components: • Thermo Information Geometry A conceptual model in which communication channel states form a structured statistical manifold whose geometric properties reflect the thermodynamic behaviour of the underlying system. • Curvature-based stability interpretation The framework proposes that structural properties of the state space may encode stability and degradation behaviour of communication channels, allowing curvature-aware control interpretations for adaptive communication. • Thermo Mesh Capacity perspective A high-level capacity framework for distributed communication meshes where global throughput limits arise from thermodynamic and structural constraints in the network. • Spatio-temporal adaptive communication model A conceptual architecture for time-varying communication environments where channel states evolve dynamically and adaptive policies operate within stability envelopes. This publication presents the conceptual architecture and research direction of the THERMO framework. Detailed mathematical formulations, algorithms, and implementation procedures are intentionally not disclosed in this document. The work is intended as a research declaration and architectural description of the THERMO communication paradigm. Author: Nagy Norbert Ferenc Copyright © 2026 All rights reserved. Commercial licensing available.
Norbert Ferenc Nagy (Wed,) studied this question.